Acetonitrile

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Condensed phase thermochemistry data

Go To: Top, Gas phase ion energetics data, Ion clustering data, Mass spectrum (electron ionization), References, Notes

Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled as indicated in comments:
ALS - Hussein Y. Afeefy, Joel F. Liebman, and Stephen E. Stein
DH - Eugene S. Domalski and Elizabeth D. Hearing

Quantity Value Units Method Reference Comment
ΔfH°liquid40.56 ± 0.40kJ/molCcrAn and Mansson, 1983ALS
ΔfH°liquid31.4kJ/molCcrHall and Baldt, 1971ALS
Quantity Value Units Method Reference Comment
ΔcH°liquid-1256.33 ± 0.30kJ/molCcrAn and Mansson, 1983ALS
ΔcH°liquid-1247.2 ± 7.2kJ/molCcrHall and Baldt, 1971ALS
ΔcH°liquid-1270.kJ/molCcbLemoult and Jungfleisch, 1909ALS
Quantity Value Units Method Reference Comment
S°liquid149.62J/mol*KN/APutnam, McEachern, et al., 1965DH

Constant pressure heat capacity of liquid

Cp,liquid (J/mol*K) Temperature (K) Reference Comment
91.69298.15Kolker, Kulikov, et al., 1992T = 283 to 323 K.; DH
77.4298.15Mirzaliev, Shakhuradov, et al., 1987T = 253 to 353 K. Unsmoothed experimental datum given as 1.863 kJ/kg*K at 293 K. Cp(liq) = 1.2838 + 0.0004369T/K + 5.3125x10-6T2/K2 kJ/kg*K (253 to 353 K).; DH
81.8303.15Guseinov and Mirzaliev, 1984T = 303 to 343 K. p = 0.1 MPa. Unsmoothed experimental datum given as 1.9930 kJ/kg*K.; DH
91.7298.15de Visser and Somsen, 1979DH
91.7298.15de Visser and Somsen, 1979DH
91.7298.15De Visser, Heuvelsland, et al., 1978DH
82.5297.Hall and Baldt, 1971DH
91.46298.15Putnam, McEachern, et al., 1965T = 20 to 300 K.; DH

Gas phase ion energetics data

Go To: Top, Condensed phase thermochemistry data, Ion clustering data, Mass spectrum (electron ionization), References, Notes

Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data evaluated as indicated in comments:
HL - Edward P. Hunter and Sharon G. Lias
L - Sharon G. Lias

Data compiled as indicated in comments:
B - John E. Bartmess
MM - Michael M. Meot-Ner (Mautner)
LL - Sharon G. Lias and Joel F. Liebman
LBLHLM - Sharon G. Lias, John E. Bartmess, Joel F. Liebman, John L. Holmes, Rhoda D. Levin, and W. Gary Mallard
LLK - Sharon G. Lias, Rhoda D. Levin, and Sherif A. Kafafi
RDSH - Henry M. Rosenstock, Keith Draxl, Bruce W. Steiner, and John T. Herron

View reactions leading to C2H3N+ (ion structure unspecified)

Quantity Value Units Method Reference Comment
IE (evaluated)12.20 ± 0.01eVN/AN/AL
Quantity Value Units Method Reference Comment
Proton affinity (review)779.2kJ/molN/AHunter and Lias, 1998HL
Quantity Value Units Method Reference Comment
Gas basicity748.kJ/molN/AHunter and Lias, 1998HL

Electron affinity determinations

EA (eV) Method Reference Comment
0.01101EFDSuess, Liu, et al., 2003B
0.0030 ± 0.0072LPESBailey, Dessent, et al., 1996B
0.01149EFDDesfrancois, Abdoul-Carime, et al., 1994EA: 11.5 meV. Dipole-bound state.; B

Proton affinity at 298K

Proton affinity (kJ/mol) Reference Comment
787.4 ± 5.9Williams, Denault, et al., 2001T = T(eff) = 498-797 KK; propionitrile, butyronitrile, valeronitrile reference compounds; MM

Ionization energy determinations

IE (eV) Method Reference Comment
12.201 ± 0.002PEGochel-Dupuis, Delwiche, et al., 1992LL
12.38 ± 0.04EIHarland and McIntosh, 1985LBLHLM
12.3 ± 0.25EIChess, Lapp, et al., 1982LBLHLM
12.33 ± 0.08EIAllam, Migahed, et al., 1982LBLHLM
12.194 ± 0.005PIRider, Ray, et al., 1981LLK
12.21PEKimura, Katsumata, et al., 1981LLK
12.20 ± 0.01PEStaley, Kleckner, et al., 1976LLK
13.14PELake and Thompson, 1970RDSH
15.11PELake and Thompson, 1970RDSH
12.12PEFrost, Herring, et al., 1970RDSH
13.11PEFrost, Herring, et al., 1970RDSH
15.12PEFrost, Herring, et al., 1970RDSH
16.98PEFrost, Herring, et al., 1970RDSH
12.19 ± 0.01PIDibeler and Liston, 1968RDSH
12.23 ± 0.05EIFranklin, Wada, et al., 1966RDSH
12.205 ± 0.004PINicholson, 1965RDSH
12.22 ± 0.01PIWatanabe, Nakayama, et al., 1962RDSH
12.46PEAsbrink, Von Niessen, et al., 1980Vertical value; LLK
12.20PELake and Thompson, 1970Vertical value; RDSH

Appearance energy determinations

Ion AE (eV) Other Products MethodReferenceComment
C+27.0 ± 0.3?EIReed and Snedden, 1956RDSH
CH+22.4 ± 0.2?EIReed and Snedden, 1956RDSH
CH2+15.7HCNEIHaney and Franklin, 1968RDSH
CH2+14.94 ± 0.02HCNPIDibeler and Liston, 1968RDSH
C2HN+15.90 ± 0.08?EIHarland and McIntosh, 1985LBLHLM
C2HN+15.1 ± 0.1H2PIDibeler and Liston, 1968RDSH
C2H2N+13.94 ± 0.02HN/AHolmes, Lossing, et al., 1993LL
C2H2N+14.38 ± 0.04HEIHarland and McIntosh, 1985LBLHLM
C2H2N+14.75 ± 0.08HEIAllam, Migahed, et al., 1982LBLHLM
C2H2N+14.01 ± 0.02HPIDibeler and Liston, 1968RDSH
C2H2N+13.54 ± 0.08HEIFranklin, Wada, et al., 1966RDSH
C2H2N+14.28 ± 0.05HEIPottie and Lossing, 1961RDSH
C2N+20.00 ± 0.08?EIHarland and McIntosh, 1985LBLHLM

De-protonation reactions

C2H2N- + Hydrogen cation = Acetonitrile

By formula: C2H2N- + H+ = C2H3N

Quantity Value Units Method Reference Comment
ΔrH°1560. ± 8.8kJ/molG+TSBartmess, Scott, et al., 1979gas phase; value altered from reference due to change in acidity scale; B
ΔrH°1544. ± 19.kJ/molCIDTGraul and Squires, 1990gas phase; B
ΔrH°1562. ± 11.kJ/molG+TSCumming and Kebarle, 1978gas phase; B
ΔrH°1568. ± 8.4kJ/molD-EAZimmerman and Brauman, 1977gas phase; B
ΔrH°1534. ± 19.kJ/molEIAEHeni and Illenberger, 1986gas phase; From MeCN; B
Quantity Value Units Method Reference Comment
ΔrG°1528. ± 8.4kJ/molIMREBartmess, Scott, et al., 1979gas phase; value altered from reference due to change in acidity scale; B
ΔrG°1530. ± 8.4kJ/molIMRECumming and Kebarle, 1978gas phase; B
ΔrG°1536. ± 8.8kJ/molH-TSZimmerman and Brauman, 1977gas phase; B

Ion clustering data

Go To: Top, Condensed phase thermochemistry data, Gas phase ion energetics data, Mass spectrum (electron ionization), References, Notes

Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled as indicated in comments:
RCD - Robert C. Dunbar
B - John E. Bartmess
M - Michael M. Meot-Ner (Mautner) and Sharon G. Lias

Note: Please consider using the reaction search for this species. This page allows searching of all reactions involving this species. Searches may be limited to ion clustering reactions. A general reaction search form is also available.

Clustering reactions

Silver ion (1+) + Acetonitrile = (Silver ion (1+) • Acetonitrile)

By formula: Ag+ + C2H3N = (Ag+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°162.kJ/molCIDTShoieb, Aribi, et al., 2001RCD

(Silver ion (1+) • Acetonitrile) + Acetonitrile = (Silver ion (1+) • 2Acetonitrile)

By formula: (Ag+ • C2H3N) + C2H3N = (Ag+ • 2C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°145.kJ/molCIDTShoieb, Aribi, et al., 2001RCD

Bromine anion + Acetonitrile = (Bromine anion • Acetonitrile)

By formula: Br- + C2H3N = (Br- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°59.8 ± 4.2kJ/molTDAsLi, Ross, et al., 1996gas phase; B
ΔrH°50.6 ± 1.7kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
ΔrH°54.0 ± 1.7kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°54.0 ± 8.4kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B,M
ΔrH°54.0kJ/molHPMSCaldwell, Masucci, et al., 1989gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°51.0J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
ΔrS°69.0J/mol*KHPMSYamdagni and Kebarle, 1972gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°36.4 ± 0.84kJ/molTDAsLi, Ross, et al., 1996gas phase; B
ΔrG°37. ± 8.4kJ/molIMRETanabe, Morgon, et al., 1996gas phase; Anchored to H2O..Br- of Hiraoka, Mizure, et al., 19882; B
ΔrG°38.5 ± 2.9kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B
ΔrG°33. ± 8.4kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B

(Bromine anion • Acetonitrile) + Acetonitrile = (Bromine anion • 2Acetonitrile)

By formula: (Br- • C2H3N) + C2H3N = (Br- • 2C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°49.0 ± 1.7kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°48.1 ± 2.9kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
ΔrH°49.37kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°71.1J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
ΔrS°85.4J/mol*KHPMSYamdagni and Kebarle, 1972gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°28. ± 5.4kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B
ΔrG°24.3kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B

(Bromine anion • 2Acetonitrile) + Acetonitrile = (Bromine anion • 3Acetonitrile)

By formula: (Br- • 2C2H3N) + C2H3N = (Br- • 3C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°38.5 ± 1.7kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°43.5 ± 2.9kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
ΔrH°41.84kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°69.9J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
ΔrS°90.8J/mol*KHPMSYamdagni and Kebarle, 1972gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°18. ± 5.4kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B
ΔrG°15.1kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B

(Bromine anion • 3Acetonitrile) + Acetonitrile = (Bromine anion • 4Acetonitrile)

By formula: (Br- • 3C2H3N) + C2H3N = (Br- • 4C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°36.4 ± 1.3kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°35.6 ± 3.3kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
ΔrH°23.0kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°82.0J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
ΔrS°45.6J/mol*KHPMSYamdagni and Kebarle, 1972gas phase; Entropy change is questionable; M
Quantity Value Units Method Reference Comment
ΔrG°12. ± 5.0kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B
ΔrG°9.20kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B

(Bromine anion • 4Acetonitrile) + Acetonitrile = (Bromine anion • 5Acetonitrile)

By formula: (Br- • 4C2H3N) + C2H3N = (Br- • 5C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°35.6 ± 1.3kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°24.3 ± 3.8kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
Quantity Value Units Method Reference Comment
ΔrS°92.9J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°7.5 ± 5.4kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B

(Bromine anion • 5Acetonitrile) + Acetonitrile = (Bromine anion • 6Acetonitrile)

By formula: (Br- • 5C2H3N) + C2H3N = (Br- • 6C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°33.5 ± 0.84kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°23. ± 4.2kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
Quantity Value Units Method Reference Comment
ΔrS°94.1J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°5.0 ± 3.8kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B

(Bromine anion • 6Acetonitrile) + Acetonitrile = (Bromine anion • 7Acetonitrile)

By formula: (Br- • 6C2H3N) + C2H3N = (Br- • 7C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°32.2 ± 1.3kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°13. ± 4.6kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
Quantity Value Units Method Reference Comment
ΔrS°95.8J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°3. ± 5.4kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B

(Bromine anion • 7Acetonitrile) + Acetonitrile = (Bromine anion • 8Acetonitrile)

By formula: (Br- • 7C2H3N) + C2H3N = (Br- • 8C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°15. ± 5.0kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Bromine anion • 8Acetonitrile) + Acetonitrile = (Bromine anion • 9Acetonitrile)

By formula: (Br- • 8C2H3N) + C2H3N = (Br- • 9C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°12. ± 5.9kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Bromine anion • 9Acetonitrile) + Acetonitrile = (Bromine anion • 10Acetonitrile)

By formula: (Br- • 9C2H3N) + C2H3N = (Br- • 10C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°15. ± 6.3kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Bromine anion • 10Acetonitrile) + Acetonitrile = (Bromine anion • 11Acetonitrile)

By formula: (Br- • 10C2H3N) + C2H3N = (Br- • 11C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°5.0 ± 6.7kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Bromine anion • 11Acetonitrile) + Acetonitrile = (Bromine anion • 12Acetonitrile)

By formula: (Br- • 11C2H3N) + C2H3N = (Br- • 12C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°5.0 ± 7.1kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Bromine anion • 12Acetonitrile) + Acetonitrile = (Bromine anion • 13Acetonitrile)

By formula: (Br- • 12C2H3N) + C2H3N = (Br- • 13C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°2. ± 7.5kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Bromine anion • 13Acetonitrile) + Acetonitrile = (Bromine anion • 14Acetonitrile)

By formula: (Br- • 13C2H3N) + C2H3N = (Br- • 14C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°3. ± 7.9kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

CH6N+ + Acetonitrile = (CH6N+ • Acetonitrile)

By formula: CH6N+ + C2H3N = (CH6N+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°110.kJ/molPHPMSSpeller and Meot-Ner (Mautner), 1985gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°108.J/mol*KPHPMSSpeller and Meot-Ner (Mautner), 1985gas phase; M

(CH6N+ • Acetonitrile) + Acetonitrile = (CH6N+ • 2Acetonitrile)

By formula: (CH6N+ • C2H3N) + C2H3N = (CH6N+ • 2C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°77.8kJ/molPHPMSMeot-Ner (Mautner) and Sieck, 1985gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°98.7J/mol*KPHPMSMeot-Ner (Mautner) and Sieck, 1985gas phase; M

(CH6N+ • 2Acetonitrile) + Acetonitrile = (CH6N+ • 3Acetonitrile)

By formula: (CH6N+ • 2C2H3N) + C2H3N = (CH6N+ • 3C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°56.1kJ/molPHPMSMeot-Ner (Mautner) and Sieck, 1985gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°87.9J/mol*KPHPMSMeot-Ner (Mautner) and Sieck, 1985gas phase; M

CN- + Acetonitrile = (CN- • Acetonitrile)

By formula: CN- + C2H3N = (CN- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°57.7 ± 4.2kJ/molTDAsMeot-ner, 1988gas phase; B,M
ΔrH°69. ± 15.kJ/molIMRELarson and McMahon, 1987gas phase; B,M
ΔrH°65.69kJ/molTDAsHiraoka, Mizure, et al., 1988gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°90.8J/mol*KPHPMSHiraoka, Mizure, et al., 1988gas phase; M
ΔrS°59.4J/mol*KPHPMSMeot-ner, 1988gas phase; M
ΔrS°102.J/mol*KN/ALarson and McMahon, 1987gas phase; switching reaction,Thermochemical ladder(CN-)H2O, Entropy change calculated or estimated; Payzant, Yamdagni, et al., 1971; M
Quantity Value Units Method Reference Comment
ΔrG°40. ± 4.2kJ/molTDAsMeot-ner, 1988gas phase; B
ΔrG°38. ± 9.6kJ/molIMRELarson and McMahon, 1987gas phase; B,M
ΔrG°38.5kJ/molTDAsHiraoka, Mizure, et al., 1988gas phase; B

C2H2N- + Acetonitrile = (C2H2N- • Acetonitrile)

By formula: C2H2N- + C2H3N = (C2H2N- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°53.6 ± 4.2kJ/molTDAsMeot-ner, 1988, 2gas phase; B,M
ΔrH°65.69kJ/molTDAsHiraoka, Mizure, et al., 1988gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°95.4J/mol*KPHPMSHiraoka, Mizure, et al., 1988gas phase; M
ΔrS°56.1J/mol*KPHPMSMeot-ner, 1988, 2gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°37. ± 4.2kJ/molTDAsMeot-ner, 1988, 2gas phase; B
ΔrG°37.2kJ/molTDAsHiraoka, Mizure, et al., 1988gas phase; B

MeCO2 anion + Acetonitrile = (MeCO2 anion • Acetonitrile)

By formula: C2H3O2- + C2H3N = (C2H3O2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°61.9 ± 4.2kJ/molTDAsMeot-ner, 1988gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°75.3J/mol*KPHPMSMeot-ner, 1988gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°39. ± 4.2kJ/molTDAsMeot-ner, 1988gas phase; B

(C2H4N+ • Methyl Alcohol) + Acetonitrile = (C2H4N+ • Acetonitrile • Methyl Alcohol)

By formula: (C2H4N+ • CH4O) + C2H3N = (C2H4N+ • C2H3N • CH4O)

Quantity Value Units Method Reference Comment
ΔrH°94.6kJ/molPHPMSEl-Shall, Olafsdottir, et al., 1991gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°103.J/mol*KPHPMSEl-Shall, Olafsdottir, et al., 1991gas phase; M

C2H4N+ + Acetonitrile = (C2H4N+ • Acetonitrile)

By formula: C2H4N+ + C2H3N = (C2H4N+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°130. ± 9.6kJ/molCIDHonma, Sunderlin, et al., 1993gas phase; guided ion beam CID; M
ΔrH°121.kJ/molPHPMSAllison, Cramer, et al., 1991gas phase; M
ΔrH°125.kJ/molPHPMSDeakyne, Meot-Ner (Mautner), et al., 1986gas phase; n; M
ΔrH°125.kJ/molPHPMSSpeller and Meot-Ner (Mautner), 1985gas phase; M
ΔrH°126.kJ/molPHPMSMeot-Ner (Mautner), 1978gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°114.J/mol*KPHPMSAllison, Cramer, et al., 1991gas phase; M
ΔrS°104.J/mol*KPHPMSDeakyne, Meot-Ner (Mautner), et al., 1986gas phase; n; M
ΔrS°103.J/mol*KPHPMSSpeller and Meot-Ner (Mautner), 1985gas phase; M
ΔrS°120.J/mol*KPHPMSMeot-Ner (Mautner), 1978gas phase; M

(C2H4N+ • Acetonitrile • Methyl Alcohol) + Acetonitrile = (C2H4N+ • 2Acetonitrile • Methyl Alcohol)

By formula: (C2H4N+ • C2H3N • CH4O) + C2H3N = (C2H4N+ • 2C2H3N • CH4O)

Quantity Value Units Method Reference Comment
ΔrH°29.kJ/molPHPMSEl-Shall, Olafsdottir, et al., 1991gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°51.9J/mol*KPHPMSEl-Shall, Olafsdottir, et al., 1991gas phase; M

(C2H4N+ • Acetonitrile • 2Methyl Alcohol) + Acetonitrile = (C2H4N+ • 2Acetonitrile • 2Methyl Alcohol)

By formula: (C2H4N+ • C2H3N • 2CH4O) + C2H3N = (C2H4N+ • 2C2H3N • 2CH4O)

Quantity Value Units Method Reference Comment
ΔrH°65.3kJ/molPHPMSEl-Shall, Olafsdottir, et al., 1991gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°90.4J/mol*KPHPMSEl-Shall, Olafsdottir, et al., 1991gas phase; M

(C2H4N+ • Acetonitrile) + Acetonitrile = (C2H4N+ • 2Acetonitrile)

By formula: (C2H4N+ • C2H3N) + C2H3N = (C2H4N+ • 2C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°39.kJ/molPHPMSMeot-Ner (Mautner), 1978gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°79.J/mol*KPHPMSMeot-Ner (Mautner), 1978gas phase; M

(C2H4N+ • Acetonitrile • Water) + Acetonitrile = (C2H4N+ • 2Acetonitrile • Water)

By formula: (C2H4N+ • C2H3N • H2O) + C2H3N = (C2H4N+ • 2C2H3N • H2O)

Quantity Value Units Method Reference Comment
ΔrH°86.2kJ/molPHPMSDeakyne, Meot-Ner (Mautner), et al., 1986gas phase; n; M
Quantity Value Units Method Reference Comment
ΔrS°114.J/mol*KPHPMSDeakyne, Meot-Ner (Mautner), et al., 1986gas phase; n; M

(C2H4N+ • Acetonitrile • 4Water) + Acetonitrile = (C2H4N+ • 2Acetonitrile • 4Water)

By formula: (C2H4N+ • C2H3N • 4H2O) + C2H3N = (C2H4N+ • 2C2H3N • 4H2O)

Quantity Value Units Method Reference Comment
ΔrH°60.2kJ/molPHPMSDeakyne, Meot-Ner (Mautner), et al., 1986gas phase; n, Entropy change calculated or estimated; M
Quantity Value Units Method Reference Comment
ΔrS°92.J/mol*KN/ADeakyne, Meot-Ner (Mautner), et al., 1986gas phase; n, Entropy change calculated or estimated; M

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
31.318.PHPMSDeakyne, Meot-Ner (Mautner), et al., 1986gas phase; n, Entropy change calculated or estimated; M

(C2H4N+ • Water) + Acetonitrile = (C2H4N+ • Acetonitrile • Water)

By formula: (C2H4N+ • H2O) + C2H3N = (C2H4N+ • C2H3N • H2O)

Quantity Value Units Method Reference Comment
ΔrH°97.9kJ/molPHPMSDeakyne, Meot-Ner (Mautner), et al., 1986gas phase; n; M
Quantity Value Units Method Reference Comment
ΔrS°103.J/mol*KPHPMSDeakyne, Meot-Ner (Mautner), et al., 1986gas phase; n; M

C2H6NO+ + Acetonitrile = (C2H6NO+ • Acetonitrile)

By formula: C2H6NO+ + C2H3N = (C2H6NO+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
67.8320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C2H7O+ + Acetonitrile = (C2H7O+ • Acetonitrile)

By formula: C2H7O+ + C2H3N = (C2H7O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
96.2320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O,; Grimsrud and Kebarle, 1973; M

C3H5O+ + Acetonitrile = (C3H5O+ • Acetonitrile)

By formula: C3H5O+ + C2H3N = (C3H5O+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°64.0kJ/molPHPMSMeot-ner, 1988, 2gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°79.1J/mol*KPHPMSMeot-ner, 1988, 2gas phase; M

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
39.295.FAMackay, Rakshit, et al., 1982gas phase; M

C3H5O- + Acetonitrile = (C3H5O- • Acetonitrile)

By formula: C3H5O- + C2H3N = (C3H5O- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°64.0 ± 4.2kJ/molTDAsMeot-ner, 1988, 2gas phase; B
Quantity Value Units Method Reference Comment
ΔrG°40. ± 8.4kJ/molTDAsMeot-ner, 1988, 2gas phase; B

C3H7O+ + Acetonitrile = (C3H7O+ • Acetonitrile)

By formula: C3H7O+ + C2H3N = (C3H7O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
87.0320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C3H7O2+ + Acetonitrile = (C3H7O2+ • Acetonitrile)

By formula: C3H7O2+ + C2H3N = (C3H7O2+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
90.0320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C3H7O2+ + Acetonitrile = (C3H7O2+ • Acetonitrile)

By formula: C3H7O2+ + C2H3N = (C3H7O2+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
84.1320.ICRBromilow, Abboud, et al., 1980gas phase; n,switching reaction((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C3H9O+ + Acetonitrile = (C3H9O+ • Acetonitrile)

By formula: C3H9O+ + C2H3N = (C3H9O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
98.7320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C3H9Sn+ + Acetonitrile = (C3H9Sn+ • Acetonitrile)

By formula: C3H9Sn+ + C2H3N = (C3H9Sn+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°157.kJ/molPHPMSStone and Splinter, 1984gas phase; switching reaction((CH3)3Sn+)CH3OH, Entropy change calculated or estimated; M
Quantity Value Units Method Reference Comment
ΔrS°131.J/mol*KN/AStone and Splinter, 1984gas phase; switching reaction((CH3)3Sn+)CH3OH, Entropy change calculated or estimated; M

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
87.9525.PHPMSStone and Splinter, 1984gas phase; switching reaction((CH3)3Sn+)CH3OH, Entropy change calculated or estimated; M

C4H2O3- + Acetonitrile = (C4H2O3- • Acetonitrile)

By formula: C4H2O3- + C2H3N = (C4H2O3- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°23. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

pyrrolide anion + Acetonitrile = (pyrrolide anion • Acetonitrile)

By formula: C4H4N- + C2H3N = (C4H4N- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°66.1 ± 4.2kJ/molTDAsMeot-ner, 1988, 2gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°97.9J/mol*KPHPMSMeot-ner, 1988, 2gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°37. ± 4.2kJ/molTDAsMeot-ner, 1988, 2gas phase; B

C4H6N+ + Acetonitrile = (C4H6N+ • Acetonitrile)

By formula: C4H6N+ + C2H3N = (C4H6N+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
87.0320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C4H7O+ + Acetonitrile = (C4H7O+ • Acetonitrile)

By formula: C4H7O+ + C2H3N = (C4H7O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
92.5320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C4H9O+ + Acetonitrile = (C4H9O+ • Acetonitrile)

By formula: C4H9O+ + C2H3N = (C4H9O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
86.6320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O, Entropy change calculated or estimated; Grimsrud and Kebarle, 1973; M

C4H9O2+ + Acetonitrile = (C4H9O2+ • Acetonitrile)

By formula: C4H9O2+ + C2H3N = (C4H9O2+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
95.8320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C4H9O2+ + Acetonitrile = (C4H9O2+ • Acetonitrile)

By formula: C4H9O2+ + C2H3N = (C4H9O2+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
79.1320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction((CH3)2O)H+)(CH3)2O; Grimsrud and Kebarle, 1973, Lias, Liebman, et al., 1984; M

C4H11O+ + Acetonitrile = (C4H11O+ • Acetonitrile)

By formula: C4H11O+ + C2H3N = (C4H11O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
82.0320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction(Me2O)2H+; Grimsrud and Kebarle, 1973, Lias, Liebman, et al., 1984; M

C5HFeO5+ + Acetonitrile = (C5HFeO5+ • Acetonitrile)

By formula: C5HFeO5+ + C2H3N = (C5HFeO5+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°70.3kJ/molPHPMSAllison, Cramer, et al., 1991gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°112.J/mol*KPHPMSAllison, Cramer, et al., 1991gas phase; M

cyclopentadienide anion + Acetonitrile = (cyclopentadienide anion • Acetonitrile)

By formula: C5H5- + C2H3N = (C5H5- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°64.9 ± 4.2kJ/molTDAsMeot-ner, 1988, 2gas phase; B
Quantity Value Units Method Reference Comment
ΔrG°36. ± 4.2kJ/molTDAsMeot-ner, 1988, 2gas phase; B

C5H9O+ + Acetonitrile = (C5H9O+ • Acetonitrile)

By formula: C5H9O+ + C2H3N = (C5H9O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
84.1320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C5H9O+ + Acetonitrile = (C5H9O+ • Acetonitrile)

By formula: C5H9O+ + C2H3N = (C5H9O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
73.2320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C5H9O2+ + Acetonitrile = (C5H9O2+ • Acetonitrile)

By formula: C5H9O2+ + C2H3N = (C5H9O2+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
74.1320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C5H11O+ + Acetonitrile = (C5H11O+ • Acetonitrile)

By formula: C5H11O+ + C2H3N = (C5H11O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
84.9320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C5H13O+ + Acetonitrile = (C5H13O+ • Acetonitrile)

By formula: C5H13O+ + C2H3N = (C5H13O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
77.0320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C6F4O2- + Acetonitrile = (C6F4O2- • Acetonitrile)

By formula: C6F4O2- + C2H3N = (C6F4O2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°14. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
14.343.PHPMSChowdhury, 1987gas phase; M

C6H4ClNO2- + Acetonitrile = (C6H4ClNO2- • Acetonitrile)

By formula: C6H4ClNO2- + C2H3N = (C6H4ClNO2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°24. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
24.343.PHPMSChowdhury, 1987gas phase; M

C6H4ClNO2- + Acetonitrile = (C6H4ClNO2- • Acetonitrile)

By formula: C6H4ClNO2- + C2H3N = (C6H4ClNO2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°26. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
26.343.PHPMSChowdhury, 1987gas phase; M

C6H4ClNO2- + Acetonitrile = (C6H4ClNO2- • Acetonitrile)

By formula: C6H4ClNO2- + C2H3N = (C6H4ClNO2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°25. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
25.343.PHPMSChowdhury, 1987gas phase; M

C6H4FNO2- + Acetonitrile = (C6H4FNO2- • Acetonitrile)

By formula: C6H4FNO2- + C2H3N = (C6H4FNO2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°26. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
26.343.PHPMSChowdhury, 1987gas phase; M

C6H4FNO2- + Acetonitrile = (C6H4FNO2- • Acetonitrile)

By formula: C6H4FNO2- + C2H3N = (C6H4FNO2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°26. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
26.343.PHPMSChowdhury, 1987gas phase; M

C6H4FNO2- + Acetonitrile = (C6H4FNO2- • Acetonitrile)

By formula: C6H4FNO2- + C2H3N = (C6H4FNO2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°25. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
25.343.PHPMSChowdhury, 1987gas phase; M

C6H4NO3- + Acetonitrile = (C6H4NO3- • Acetonitrile)

By formula: C6H4NO3- + C2H3N = (C6H4NO3- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°24. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

C6H4NO3- + Acetonitrile = (C6H4NO3- • Acetonitrile)

By formula: C6H4NO3- + C2H3N = (C6H4NO3- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°27. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

C6H4N2O4- + Acetonitrile = (C6H4N2O4- • Acetonitrile)

By formula: C6H4N2O4- + C2H3N = (C6H4N2O4- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°13. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
13.343.PHPMSChowdhury, 1987gas phase; M

C6H4N2O4- + Acetonitrile = (C6H4N2O4- • Acetonitrile)

By formula: C6H4N2O4- + C2H3N = (C6H4N2O4- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°20. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
20.343.PHPMSChowdhury, 1987gas phase; M

C6H4N2O4- + Acetonitrile = (C6H4N2O4- • Acetonitrile)

By formula: C6H4N2O4- + C2H3N = (C6H4N2O4- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°18. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
18.343.PHPMSChowdhury, 1987gas phase; M

p-Benzoquinone anion + Acetonitrile = (p-Benzoquinone anion • Acetonitrile)

By formula: C6H4O2- + C2H3N = (C6H4O2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°20. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
20.343.PHPMSChowdhury, 1987gas phase; M

C6H5NO2- + Acetonitrile = (C6H5NO2- • Acetonitrile)

By formula: C6H5NO2- + C2H3N = (C6H5NO2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°28. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
28.343.PHPMSChowdhury, 1987gas phase; M

C6H7N+ + Acetonitrile = (C6H7N+ • Acetonitrile)

By formula: C6H7N+ + C2H3N = (C6H7N+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°72.4kJ/molPHPMSMeot-Ner (Mautner) and El-Shall, 1986gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°74.5J/mol*KPHPMSMeot-Ner (Mautner) and El-Shall, 1986gas phase; M

C6H7O+ + Acetonitrile = (C6H7O+ • Acetonitrile)

By formula: C6H7O+ + C2H3N = (C6H7O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
78.2320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C6H11O+ + Acetonitrile = (C6H11O+ • Acetonitrile)

By formula: C6H11O+ + C2H3N = (C6H11O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
81.2320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C6H13O+ + Acetonitrile = (C6H13O+ • Acetonitrile)

By formula: C6H13O+ + C2H3N = (C6H13O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
76.1320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C6H13O+ + Acetonitrile = (C6H13O+ • Acetonitrile)

By formula: C6H13O+ + C2H3N = (C6H13O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
75.7320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C6H15O+ + Acetonitrile = (C6H15O+ • Acetonitrile)

By formula: C6H15O+ + C2H3N = (C6H15O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
78.2320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C6H15O+ + Acetonitrile = (C6H15O+ • Acetonitrile)

By formula: C6H15O+ + C2H3N = (C6H15O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
74.9320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C7H4F3NO2- + Acetonitrile = (C7H4F3NO2- • Acetonitrile)

By formula: C7H4F3NO2- + C2H3N = (C7H4F3NO2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°55.6 ± 8.4kJ/molN/AChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B,M
Quantity Value Units Method Reference Comment
ΔrS°97.9J/mol*KPHPMSChowdhury, 1987gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°23. ± 8.4kJ/molTDAsChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

C7H4N2O2- + Acetonitrile = (C7H4N2O2- • Acetonitrile)

By formula: C7H4N2O2- + C2H3N = (C7H4N2O2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°21. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
21.343.PHPMSChowdhury, 1987gas phase; M

C7H4N2O2- + Acetonitrile = (C7H4N2O2- • Acetonitrile)

By formula: C7H4N2O2- + C2H3N = (C7H4N2O2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°22. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
22.343.PHPMSChowdhury, 1987gas phase; M

C7H4N2O2- + Acetonitrile = (C7H4N2O2- • Acetonitrile)

By formula: C7H4N2O2- + C2H3N = (C7H4N2O2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°58.2 ± 8.4kJ/molN/AChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B,M
Quantity Value Units Method Reference Comment
ΔrS°120.J/mol*KPHPMSChowdhury, 1987gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°17. ± 8.4kJ/molTDAsChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

C7H7NO2- + Acetonitrile = (C7H7NO2- • Acetonitrile)

By formula: C7H7NO2- + C2H3N = (C7H7NO2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°28. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
28.343.PHPMSChowdhury, 1987gas phase; M

C7H7NO3- + Acetonitrile = (C7H7NO3- • Acetonitrile)

By formula: C7H7NO3- + C2H3N = (C7H7NO3- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°57.7 ± 8.4kJ/molN/AChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B,M
Quantity Value Units Method Reference Comment
ΔrS°95.0J/mol*KPHPMSChowdhury, 1987gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°28. ± 8.4kJ/molTDAsChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

C7H11O+ + Acetonitrile = (C7H11O+ • Acetonitrile)

By formula: C7H11O+ + C2H3N = (C7H11O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
59.8320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C7H15O+ + Acetonitrile = (C7H15O+ • Acetonitrile)

By formula: C7H15O+ + C2H3N = (C7H15O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
69.9320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C8H9O2+ + Acetonitrile = (C8H9O2+ • Acetonitrile)

By formula: C8H9O2+ + C2H3N = (C8H9O2+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
69.0320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C9H11O+ + Acetonitrile = (C9H11O+ • Acetonitrile)

By formula: C9H11O+ + C2H3N = (C9H11O+ • C2H3N)

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
64.9320.ICRBromilow, Abboud, et al., 1980gas phase; switching reaction,n((CH3)2OH+)(CH3)2O; Grimsrud and Kebarle, 1973; M

C10H4Cl2O2- + Acetonitrile = (C10H4Cl2O2- • Acetonitrile)

By formula: C10H4Cl2O2- + C2H3N = (C10H4Cl2O2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°<6.3 ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
6.3343.PHPMSChowdhury, 1987gas phase; DG<; M

1,4-Naphthalenedione anion + Acetonitrile = (1,4-Naphthalenedione anion • Acetonitrile)

By formula: C10H6O2- + C2H3N = (C10H6O2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrG°18. ± 6.7kJ/molIMREChowdhury, Grimsrud, et al., 1987gas phase; Free energy affinity at 70°C.; B

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
18.343.PHPMSChowdhury, 1987gas phase; M

C10H10Fe+ + Acetonitrile = (C10H10Fe+ • Acetonitrile)

By formula: C10H10Fe+ + C2H3N = (C10H10Fe+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°47.7kJ/molPHPMSMeot-Ner (Mautner), 1989gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°79.1J/mol*KPHPMSMeot-Ner (Mautner), 1989gas phase; M

(C10H10Fe+ • Acetonitrile) + Acetonitrile = (C10H10Fe+ • 2Acetonitrile)

By formula: (C10H10Fe+ • C2H3N) + C2H3N = (C10H10Fe+ • 2C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°38.kJ/molPHPMSMeot-Ner (Mautner), 1989gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°66.9J/mol*KPHPMSMeot-Ner (Mautner), 1989gas phase; M

C10H11Fe+ + Acetonitrile = (C10H11Fe+ • Acetonitrile)

By formula: C10H11Fe+ + C2H3N = (C10H11Fe+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°54.0kJ/molPHPMSMeot-Ner (Mautner), 1989gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°97.9J/mol*KPHPMSMeot-Ner (Mautner), 1989gas phase; M

C11H10+ + Acetonitrile = (C11H10+ • Acetonitrile)

By formula: C11H10+ + C2H3N = (C11H10+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°47.3kJ/molPHPMSEl-Shall and Meot-Ner (Mautner), 1987gas phase; Entropy change calculated or estimated; M
Quantity Value Units Method Reference Comment
ΔrS°92.J/mol*KN/AEl-Shall and Meot-Ner (Mautner), 1987gas phase; Entropy change calculated or estimated; M

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
19.303.PHPMSEl-Shall and Meot-Ner (Mautner), 1987gas phase; Entropy change calculated or estimated; M

Chlorine anion + Acetonitrile = (Chlorine anion • Acetonitrile)

By formula: Cl- + C2H3N = (Cl- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°61. ± 10.kJ/molAVGN/AAverage of 6 values; Individual data points
Quantity Value Units Method Reference Comment
ΔrS°65.7J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
ΔrS°65.7J/mol*KPHPMSYamabe, Furumiya, et al., 1986gas phase; M
ΔrS°59.8J/mol*KPHPMSSieck, 1985gas phase; M
ΔrS°59.8J/mol*KPHPMSYamdagni and Kebarle, 1972gas phase; M
ΔrS°89.5J/mol*KN/ALarson and McMahon, 1984gas phase; switching reaction(Cl-)CF3H, Entropy change calculated or estimated; Larson and McMahon, 1984, 2; M
Quantity Value Units Method Reference Comment
ΔrG°42.68 ± 0.84kJ/molTDAsLi, Ross, et al., 1996gas phase; B
ΔrG°38. ± 8.4kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B
ΔrG°37. ± 11.kJ/molTDAsYamabe, Furumiya, et al., 1986gas phase; B
ΔrG°42.26 ± 0.84kJ/molTDAsSieck, 1985gas phase; B
ΔrG°38. ± 8.4kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B

(Chlorine anion • Acetonitrile) + Acetonitrile = (Chlorine anion • 2Acetonitrile)

By formula: (Cl- • C2H3N) + C2H3N = (Cl- • 2C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°52.3 ± 1.7kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°50.2 ± 2.9kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
ΔrH°51.04kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°68.2J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
ΔrS°79.1J/mol*KPHPMSYamdagni and Kebarle, 1972gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°32. ± 5.0kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B
ΔrG°27.6kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B

(Chlorine anion • 2Acetonitrile) + Acetonitrile = (Chlorine anion • 3Acetonitrile)

By formula: (Cl- • 2C2H3N) + C2H3N = (Cl- • 3C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°46.9 ± 1.7kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°50.2 ± 2.9kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
ΔrH°44.35kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°82.0J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
ΔrS°84.1J/mol*KPHPMSYamdagni and Kebarle, 1972gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°22. ± 5.4kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B
ΔrG°19.2kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B

(Chlorine anion • 3Acetonitrile) + Acetonitrile = (Chlorine anion • 4Acetonitrile)

By formula: (Cl- • 3C2H3N) + C2H3N = (Cl- • 4C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°45.6 ± 1.3kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°37.7 ± 3.3kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
ΔrH°25.9kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°111.J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
ΔrS°45.2J/mol*KPHPMSYamdagni and Kebarle, 1972gas phase; Entropy change is questionable; M
Quantity Value Units Method Reference Comment
ΔrG°12. ± 5.0kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B
ΔrG°12.6kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B

(Chlorine anion • 4Acetonitrile) + Acetonitrile = (Chlorine anion • 5Acetonitrile)

By formula: (Cl- • 4C2H3N) + C2H3N = (Cl- • 5C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°41.0 ± 0.84kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°24.3 ± 3.8kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
Quantity Value Units Method Reference Comment
ΔrS°113.J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°7.1 ± 3.3kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B

(Chlorine anion • 5Acetonitrile) + Acetonitrile = (Chlorine anion • 6Acetonitrile)

By formula: (Cl- • 5C2H3N) + C2H3N = (Cl- • 6C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°39.7 ± 0.84kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°24. ± 4.2kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
Quantity Value Units Method Reference Comment
ΔrS°122.J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°3.3 ± 3.3kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B

(Chlorine anion • 6Acetonitrile) + Acetonitrile = (Chlorine anion • 7Acetonitrile)

By formula: (Cl- • 6C2H3N) + C2H3N = (Cl- • 7C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°39.3 ± 1.3kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°16. ± 4.6kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
Quantity Value Units Method Reference Comment
ΔrS°128.J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°0.8 ± 5.9kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B

(Chlorine anion • 7Acetonitrile) + Acetonitrile = (Chlorine anion • 8Acetonitrile)

By formula: (Cl- • 7C2H3N) + C2H3N = (Cl- • 8C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°38.5kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; Entropy estimated; B,M
ΔrH°12. ± 5.0kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
Quantity Value Units Method Reference Comment
ΔrS°130.J/mol*KN/AHiraoka, Mizuse, et al., 1988gas phase; Entropy change calculated or estimated; M
Quantity Value Units Method Reference Comment
ΔrG°-1.7kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; Entropy estimated; B

(Chlorine anion • 8Acetonitrile) + Acetonitrile = (Chlorine anion • 9Acetonitrile)

By formula: (Cl- • 8C2H3N) + C2H3N = (Cl- • 9C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°18. ± 5.9kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Chlorine anion • 9Acetonitrile) + Acetonitrile = (Chlorine anion • 10Acetonitrile)

By formula: (Cl- • 9C2H3N) + C2H3N = (Cl- • 10C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°8.8 ± 6.3kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Chlorine anion • 10Acetonitrile) + Acetonitrile = (Chlorine anion • 11Acetonitrile)

By formula: (Cl- • 10C2H3N) + C2H3N = (Cl- • 11C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°7.5 ± 6.7kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Chlorine anion • 11Acetonitrile) + Acetonitrile = (Chlorine anion • 12Acetonitrile)

By formula: (Cl- • 11C2H3N) + C2H3N = (Cl- • 12C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°-2. ± 7.1kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Chlorine anion • 12Acetonitrile) + Acetonitrile = (Chlorine anion • 13Acetonitrile)

By formula: (Cl- • 12C2H3N) + C2H3N = (Cl- • 13C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°4. ± 7.5kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Chlorine anion • 13Acetonitrile) + Acetonitrile = (Chlorine anion • 14Acetonitrile)

By formula: (Cl- • 13C2H3N) + C2H3N = (Cl- • 14C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°-2. ± 7.9kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

Cesium ion (1+) + Acetonitrile = (Cesium ion (1+) • Acetonitrile)

By formula: Cs+ + C2H3N = (Cs+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°80.3kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°77.8J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

(Cesium ion (1+) • Acetonitrile) + Acetonitrile = (Cesium ion (1+) • 2Acetonitrile)

By formula: (Cs+ • C2H3N) + C2H3N = (Cs+ • 2C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°69.9kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°90.4J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

(Cesium ion (1+) • 2Acetonitrile) + Acetonitrile = (Cesium ion (1+) • 3Acetonitrile)

By formula: (Cs+ • 2C2H3N) + C2H3N = (Cs+ • 3C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°59.8kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°100.J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

(Cesium ion (1+) • 3Acetonitrile) + Acetonitrile = (Cesium ion (1+) • 4Acetonitrile)

By formula: (Cs+ • 3C2H3N) + C2H3N = (Cs+ • 4C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°50.6kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°113.J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

(Cesium ion (1+) • 4Acetonitrile) + Acetonitrile = (Cesium ion (1+) • 5Acetonitrile)

By formula: (Cs+ • 4C2H3N) + C2H3N = (Cs+ • 5C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°45.6kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°138.J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

Copper ion (1+) + Acetonitrile = (Copper ion (1+) • Acetonitrile)

By formula: Cu+ + C2H3N = (Cu+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°238. ± 3.kJ/molCIDTVitale, 2001CH3CN is fifth ligand; RCD

(Copper ion (1+) • Acetonitrile) + Acetonitrile = (Copper ion (1+) • 2Acetonitrile)

By formula: (Cu+ • C2H3N) + C2H3N = (Cu+ • 2C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°238. ± 9.2kJ/molCIDTVitale, 2001RCD

(Copper ion (1+) • 2Acetonitrile) + Acetonitrile = (Copper ion (1+) • 3Acetonitrile)

By formula: (Cu+ • 2C2H3N) + C2H3N = (Cu+ • 3C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°84. ± 2.kJ/molCIDTVitale, 2001RCD

(Copper ion (1+) • 3Acetonitrile) + Acetonitrile = (Copper ion (1+) • 4Acetonitrile)

By formula: (Cu+ • 3C2H3N) + C2H3N = (Cu+ • 4C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°67. ± 2.kJ/molCIDTVitale, 2001RCD

(Copper ion (1+) • 4Acetonitrile) + Acetonitrile = (Copper ion (1+) • 5Acetonitrile)

By formula: (Cu+ • 4C2H3N) + C2H3N = (Cu+ • 5C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°59.8 ± 4.2kJ/molCIDTVitale, 2001RCD

Fluorine anion + Acetonitrile = (Fluorine anion • Acetonitrile)

By formula: F- + C2H3N = (F- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°103. ± 8.4kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; Discrepancy with Yamdagni and Kebarle, 1972 "not resolved; B,M
ΔrH°66.9 ± 8.4kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°95.8J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
ΔrS°56.1J/mol*KPHPMSYamdagni and Kebarle, 1972gas phase; Entropy change is questionable; M
Quantity Value Units Method Reference Comment
ΔrG°74. ± 14.kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; Discrepancy with Yamdagni and Kebarle, 1972 "not resolved; B
ΔrG°50.2 ± 8.4kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B

(Fluorine anion • Acetonitrile) + Acetonitrile = (Fluorine anion • 2Acetonitrile)

By formula: (F- • C2H3N) + C2H3N = (F- • 2C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°74.1 ± 6.3kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°53.97kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°95.8J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
ΔrS°61.9J/mol*KPHPMSYamdagni and Kebarle, 1972gas phase; Entropy change is questionable; M
Quantity Value Units Method Reference Comment
ΔrG°45. ± 14.kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B
ΔrG°35.6kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B

(Fluorine anion • 2Acetonitrile) + Acetonitrile = (Fluorine anion • 3Acetonitrile)

By formula: (F- • 2C2H3N) + C2H3N = (F- • 3C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°63.2 ± 4.2kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°48.95kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°93.7J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
ΔrS°74.9J/mol*KPHPMSYamdagni and Kebarle, 1972gas phase; Entropy change is questionable; M
Quantity Value Units Method Reference Comment
ΔrG°35. ± 10.kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B
ΔrG°26.8kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B

(Fluorine anion • 3Acetonitrile) + Acetonitrile = (Fluorine anion • 4Acetonitrile)

By formula: (F- • 3C2H3N) + C2H3N = (F- • 4C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°53.6 ± 2.1kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°43.51kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°110.J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
ΔrS°82.0J/mol*KPHPMSYamdagni and Kebarle, 1972gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°21. ± 7.9kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B
ΔrG°18.8kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B

(Fluorine anion • 4Acetonitrile) + Acetonitrile = (Fluorine anion • 5Acetonitrile)

By formula: (F- • 4C2H3N) + C2H3N = (F- • 5C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°48.12 ± 0.84kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°22.2kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°124.J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
ΔrS°31.J/mol*KPHPMSYamdagni and Kebarle, 1972gas phase; Entropy change is questionable; M
Quantity Value Units Method Reference Comment
ΔrG°10.9 ± 3.3kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B
ΔrG°13.0kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B

(Fluorine anion • 5Acetonitrile) + Acetonitrile = (Fluorine anion • 6Acetonitrile)

By formula: (F- • 5C2H3N) + C2H3N = (F- • 6C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°40.6 ± 0.84kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°116.J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°5.9 ± 3.8kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B

(Fluorine anion • 6Acetonitrile) + Acetonitrile = (Fluorine anion • 7Acetonitrile)

By formula: (F- • 6C2H3N) + C2H3N = (F- • 7C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°35.6kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; Entropy estimated; B,M
Quantity Value Units Method Reference Comment
ΔrS°120.J/mol*KN/AHiraoka, Mizuse, et al., 1988gas phase; Entropy change calculated or estimated; M
Quantity Value Units Method Reference Comment
ΔrG°0.42kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; Entropy estimated; B

NH4+ + Acetonitrile = (NH4+ • Acetonitrile)

By formula: H4N+ + C2H3N = (H4N+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°115.kJ/molPHPMSLiebman, Romm, et al., 1991gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°101.J/mol*KPHPMSLiebman, Romm, et al., 1991gas phase; M

(NH4+ • Acetonitrile) + Acetonitrile = (NH4+ • 2Acetonitrile)

By formula: (H4N+ • C2H3N) + C2H3N = (H4N+ • 2C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°88.7kJ/molPHPMSLiebman, Romm, et al., 1991gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°106.J/mol*KPHPMSLiebman, Romm, et al., 1991gas phase; M

(NH4+ • 2Acetonitrile) + Acetonitrile = (NH4+ • 3Acetonitrile)

By formula: (H4N+ • 2C2H3N) + C2H3N = (H4N+ • 3C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°59.4kJ/molPHPMSLiebman, Romm, et al., 1991gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°81.6J/mol*KPHPMSLiebman, Romm, et al., 1991gas phase; M

(NH4+ • 3Acetonitrile) + Acetonitrile = (NH4+ • 4Acetonitrile)

By formula: (H4N+ • 3C2H3N) + C2H3N = (H4N+ • 4C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°49.0kJ/molPHPMSLiebman, Romm, et al., 1991gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°92.9J/mol*KPHPMSLiebman, Romm, et al., 1991gas phase; M

Iodide + Acetonitrile = (Iodide • Acetonitrile)

By formula: I- + C2H3N = (I- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°49.8 ± 8.4kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B,M
ΔrH°46.4 ± 1.7kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
ΔrH°46.4 ± 4.6kJ/molLPESDessent, Bailey, et al., 1995gas phase; B
ΔrH°46.02 ± 0.84kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°50.kJ/molPHPMSCaldwell, Masucci, et al., 1989gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°57.7J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
ΔrS°76.1J/mol*KPHPMSYamdagni and Kebarle, 1972gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°27. ± 8.4kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B
ΔrG°28. ± 8.4kJ/molIMRETanabe, Morgon, et al., 1996gas phase; Anchored to H2O..I- of Caldwell and Kebarle, 1984; B
ΔrG°28.9 ± 2.1kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B

(Iodide • Acetonitrile) + Acetonitrile = (Iodide • 2Acetonitrile)

By formula: (I- • C2H3N) + C2H3N = (I- • 2C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°43.51 ± 0.84kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°46.4 ± 2.9kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
ΔrH°46.4 ± 1.7kJ/molN/ADessent, Bailey, et al., 1995gas phase; Vertical Detachment Energy: 2.25±0.08 eV.; B
ΔrH°43.93kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°77.0J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
ΔrS°87.0J/mol*KPHPMSYamdagni and Kebarle, 1972gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°20.5 ± 3.3kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B
ΔrG°18.0kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B

(Iodide • 2Acetonitrile) + Acetonitrile = (Iodide • 3Acetonitrile)

By formula: (I- • 2C2H3N) + C2H3N = (I- • 3C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°38.5 ± 0.84kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°40.6 ± 2.9kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
ΔrH°38.9kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°83.3J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
ΔrS°92.5J/mol*KPHPMSYamdagni and Kebarle, 1972gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°13.4 ± 3.3kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B
ΔrG°11.3kJ/molTDAsYamdagni and Kebarle, 1972gas phase; B

(Iodide • 3Acetonitrile) + Acetonitrile = (Iodide • 4Acetonitrile)

By formula: (I- • 3C2H3N) + C2H3N = (I- • 4C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°32.6 ± 0.42kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°31.0 ± 3.3kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
Quantity Value Units Method Reference Comment
ΔrS°80.8J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°8.4 ± 1.7kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B

(Iodide • 4Acetonitrile) + Acetonitrile = (Iodide • 5Acetonitrile)

By formula: (I- • 4C2H3N) + C2H3N = (I- • 5C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°29.7 ± 1.3kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B,M
ΔrH°44.4 ± 3.8kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B
Quantity Value Units Method Reference Comment
ΔrS°79.1J/mol*KPHPMSHiraoka, Mizuse, et al., 1988gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°5.9 ± 5.9kJ/molTDAsHiraoka, Mizuse, et al., 1988gas phase; B

(Iodide • 5Acetonitrile) + Acetonitrile = (Iodide • 6Acetonitrile)

By formula: (I- • 5C2H3N) + C2H3N = (I- • 6C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°-10. ± 4.2kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Iodide • 6Acetonitrile) + Acetonitrile = (Iodide • 7Acetonitrile)

By formula: (I- • 6C2H3N) + C2H3N = (I- • 7C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°15. ± 4.6kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Iodide • 7Acetonitrile) + Acetonitrile = (Iodide • 8Acetonitrile)

By formula: (I- • 7C2H3N) + C2H3N = (I- • 8C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°13. ± 5.0kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Iodide • 8Acetonitrile) + Acetonitrile = (Iodide • 9Acetonitrile)

By formula: (I- • 8C2H3N) + C2H3N = (I- • 9C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°10. ± 5.9kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Iodide • 9Acetonitrile) + Acetonitrile = (Iodide • 10Acetonitrile)

By formula: (I- • 9C2H3N) + C2H3N = (I- • 10C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°10. ± 6.3kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Iodide • 10Acetonitrile) + Acetonitrile = (Iodide • 11Acetonitrile)

By formula: (I- • 10C2H3N) + C2H3N = (I- • 11C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°8.8 ± 6.7kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Iodide • 11Acetonitrile) + Acetonitrile = (Iodide • 12Acetonitrile)

By formula: (I- • 11C2H3N) + C2H3N = (I- • 12C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°8.8 ± 7.1kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

(Iodide • 13Acetonitrile) + Acetonitrile = (Iodide • 14Acetonitrile)

By formula: (I- • 13C2H3N) + C2H3N = (I- • 14C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°-4. ± 7.9kJ/molN/AMarkovich, Perera, et al., 1996gas phase; B

Potassium ion (1+) + Acetonitrile = (Potassium ion (1+) • Acetonitrile)

By formula: K+ + C2H3N = (K+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°102.kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°90.0J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

(Potassium ion (1+) • Acetonitrile) + Acetonitrile = (Potassium ion (1+) • 2Acetonitrile)

By formula: (K+ • C2H3N) + C2H3N = (K+ • 2C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°86.2kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°101.J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

(Potassium ion (1+) • 2Acetonitrile) + Acetonitrile = (Potassium ion (1+) • 3Acetonitrile)

By formula: (K+ • 2C2H3N) + C2H3N = (K+ • 3C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°76.1kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°118.J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

(Potassium ion (1+) • 3Acetonitrile) + Acetonitrile = (Potassium ion (1+) • 4Acetonitrile)

By formula: (K+ • 3C2H3N) + C2H3N = (K+ • 4C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°56.9kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°115.J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

(Potassium ion (1+) • 4Acetonitrile) + Acetonitrile = (Potassium ion (1+) • 5Acetonitrile)

By formula: (K+ • 4C2H3N) + C2H3N = (K+ • 5C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°48.1kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°141.J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

Lithium ion (1+) + Acetonitrile = (Lithium ion (1+) • Acetonitrile)

By formula: Li+ + C2H3N = (Li+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°180.kJ/molICRStaley and Beauchamp, 1975gas phase; switching reaction(Li+)H2O, from graph; Dzidic and Kebarle, 1970 interpolated; M

Nitrogen oxide anion + Acetonitrile = (Nitrogen oxide anion • Acetonitrile)

By formula: NO2- + C2H3N = (NO2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°56.07 ± 0.42kJ/molTDAsSieck, 1985gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°64.0J/mol*KPHPMSSieck, 1985gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°36.8 ± 0.84kJ/molTDAsSieck, 1985gas phase; B

Sodium ion (1+) + Acetonitrile = (Sodium ion (1+) • Acetonitrile)

By formula: Na+ + C2H3N = (Na+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°128. ± 4.6kJ/molCIDTValina, 2001RCD

Free energy of reaction

ΔrG° (kJ/mol) T (K) Method Reference Comment
98.7298.IMREMcMahon and Ohanessian, 2000Anchor alanine=39.89; RCD

(Sodium ion (1+) • Acetonitrile) + Acetonitrile = (Sodium ion (1+) • 2Acetonitrile)

By formula: (Na+ • C2H3N) + C2H3N = (Na+ • 2C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°109. ± 7.9kJ/molCIDTValina, 2001RCD
ΔrH°102.kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°95.0J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

(Sodium ion (1+) • 2Acetonitrile) + Acetonitrile = (Sodium ion (1+) • 3Acetonitrile)

By formula: (Na+ • 2C2H3N) + C2H3N = (Na+ • 3C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°89. ± 3.kJ/molCIDTValina, 2001RCD
ΔrH°86.2kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°115.J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

(Sodium ion (1+) • 3Acetonitrile) + Acetonitrile = (Sodium ion (1+) • 4Acetonitrile)

By formula: (Na+ • 3C2H3N) + C2H3N = (Na+ • 4C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°64. ± 3.kJ/molCIDTValina, 2001RCD
ΔrH°62.3kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°117.J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

(Sodium ion (1+) • 4Acetonitrile) + Acetonitrile = (Sodium ion (1+) • 5Acetonitrile)

By formula: (Na+ • 4C2H3N) + C2H3N = (Na+ • 5C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°53. ± 3.kJ/molCIDTValina, 2001CH3CN is fifth ligand; RCD
ΔrH°53.1kJ/molHPMSDavidson and Kebarle, 1976gas phase; Entropy change is questionable; M
Quantity Value Units Method Reference Comment
ΔrS°172.J/mol*KHPMSDavidson and Kebarle, 1976gas phase; Entropy change is questionable; M

Oxygen anion + Acetonitrile = (Oxygen anion • Acetonitrile)

By formula: O2- + C2H3N = (O2- • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°68.62kJ/molTDAsYamdagni, Payzant, et al., 1973gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°72.8J/mol*KPHPMSYamdagni, Payzant, et al., 1973gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°46.86kJ/molTDAsYamdagni, Payzant, et al., 1973gas phase; B

(Oxygen anion • Acetonitrile) + Acetonitrile = (Oxygen anion • 2Acetonitrile)

By formula: (O2- • C2H3N) + C2H3N = (O2- • 2C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°59.4 ± 2.9kJ/molTDAsYamdagni, Payzant, et al., 1973gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°92.0J/mol*KPHPMSYamdagni, Payzant, et al., 1973gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°32.2 ± 1.7kJ/molTDAsYamdagni, Payzant, et al., 1973gas phase; B

(Oxygen anion • 2Acetonitrile) + Acetonitrile = (Oxygen anion • 3Acetonitrile)

By formula: (O2- • 2C2H3N) + C2H3N = (O2- • 3C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°49.8 ± 2.5kJ/molTDAsYamdagni, Payzant, et al., 1973gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°103.J/mol*KPHPMSYamdagni, Payzant, et al., 1973gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°18.8 ± 0.84kJ/molTDAsYamdagni, Payzant, et al., 1973gas phase; B

(Oxygen anion • 3Acetonitrile) + Acetonitrile = (Oxygen anion • 4Acetonitrile)

By formula: (O2- • 3C2H3N) + C2H3N = (O2- • 4C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°39.7 ± 2.1kJ/molTDAsYamdagni, Payzant, et al., 1973gas phase; B,M
Quantity Value Units Method Reference Comment
ΔrS°93.7J/mol*KPHPMSYamdagni, Payzant, et al., 1973gas phase; M
Quantity Value Units Method Reference Comment
ΔrG°11.7 ± 0.42kJ/molTDAsYamdagni, Payzant, et al., 1973gas phase; B

Rubidium ion (1+) + Acetonitrile = (Rubidium ion (1+) • Acetonitrile)

By formula: Rb+ + C2H3N = (Rb+ • C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°86.6kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°75.7J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

(Rubidium ion (1+) • Acetonitrile) + Acetonitrile = (Rubidium ion (1+) • 2Acetonitrile)

By formula: (Rb+ • C2H3N) + C2H3N = (Rb+ • 2C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°74.1kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°87.4J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

(Rubidium ion (1+) • 2Acetonitrile) + Acetonitrile = (Rubidium ion (1+) • 3Acetonitrile)

By formula: (Rb+ • 2C2H3N) + C2H3N = (Rb+ • 3C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°65.7kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°104.J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

(Rubidium ion (1+) • 3Acetonitrile) + Acetonitrile = (Rubidium ion (1+) • 4Acetonitrile)

By formula: (Rb+ • 3C2H3N) + C2H3N = (Rb+ • 4C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°52.3kJ/molHPMSDavidson and Kebarle, 1976gas phase; M
Quantity Value Units Method Reference Comment
ΔrS°108.J/mol*KHPMSDavidson and Kebarle, 1976gas phase; M

(Rubidium ion (1+) • 4Acetonitrile) + Acetonitrile = (Rubidium ion (1+) • 5Acetonitrile)

By formula: (Rb+ • 4C2H3N) + C2H3N = (Rb+ • 5C2H3N)

Quantity Value Units Method Reference Comment
ΔrH°46.4kJ/molHPMSDavidson and Kebarle, 1976gas phase; Entropy change is questionable; M
Quantity Value Units Method Reference Comment
ΔrS°136.J/mol*KHPMSDavidson and Kebarle, 1976gas phase; Entropy change is questionable; M

Mass spectrum (electron ionization)

Go To: Top, Condensed phase thermochemistry data, Gas phase ion energetics data, Ion clustering data, References, Notes

Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled by: NIST Mass Spectrometry Data Center, William E. Wallace, director

Spectrum

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Additional Data

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Collection (C) 2014 copyright by the U.S. Secretary of Commerce
on behalf of the United States of America. All rights reserved.
Origin Japan AIST/NIMC Database- Spectrum MS-NW-4393
NIST MS number 228221

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References

Go To: Top, Condensed phase thermochemistry data, Gas phase ion energetics data, Ion clustering data, Mass spectrum (electron ionization), Notes

Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

An and Mansson, 1983
An, X.; Mansson, M., Enthalpies of combustion and formation of acetontrile, J. Chem. Thermodyn., 1983, 15, 287-293. [all data]

Hall and Baldt, 1971
Hall, H.K., Jr.; Baldt, J.H., Thermochemistry of strained-ring bridgehead nitriles and esters, J. Am. Chem. Soc., 1971, 93, 140-145. [all data]

Lemoult and Jungfleisch, 1909
Lemoult, M.P.; Jungfleisch, M.E., Thermochimie. - Comparaisons entre les nitriles et les carbylamines, Compt. Rend., 1909, 148, 1602-1604. [all data]

Putnam, McEachern, et al., 1965
Putnam, W.E.; McEachern, D.M., Jr.; Kilpatrick, J.E., Entropy and related thermodynamic properties of acetonitrile (methyl cyanide), J. Chem. Phys., 1965, 42, 749-755. [all data]

Kolker, Kulikov, et al., 1992
Kolker, A.M.; Kulikov, M.V.; Krestov, Al.G., Volumes and heat capacities of binary non-aqueous mixtures. Part 2. The systems acetonitrile-N,N-dimethylformamide and acetonitrile-hexamethylphosphoric triamide, Thermochim. Acta, 1992, 211, 73-84. [all data]

Mirzaliev, Shakhuradov, et al., 1987
Mirzaliev, A.A.; Shakhuradov, Sh.G.; Guseinov, S.O., Investigation of the isobaric heat capacity of nitriles at different temperatures, Izv. Vyssh. Ucheb. Zaved., Neft i Gaz, 1987, 30(4), 55-58. [all data]

Guseinov and Mirzaliev, 1984
Guseinov, S.O.; Mirzaliev, A.A., Some results of various measurements of the isobaric heat capacity by the montonic heating, Izv. Vyshch. Ucheb. Zaved., Neft i Gaz, 1984, (5), 42-45. [all data]

de Visser and Somsen, 1979
de Visser, C.; Somsen, G., Thermochemical behavior of mixtures of N,N-dimethylformamide with dimethylsulfoxide, acetonitrile, and N-methylformamide: volumes and heat capacities, J. Solution Chem., 1979, 8, 593-600. [all data]

De Visser, Heuvelsland, et al., 1978
De Visser, C.; Heuvelsland, W.J.M.; Dunn, L.A.; Somsen, G., Some properties of binary aqueous liquid mixtures, J. Chem. Soc., Faraday Trans.1, 1978, 74, 1159-1169. [all data]

Hunter and Lias, 1998
Hunter, E.P.; Lias, S.G., Evaluated Gas Phase Basicities and Proton Affinities of Molecules: An Update, J. Phys. Chem. Ref. Data, 1998, 27, 3, 413-656, https://doi.org/10.1063/1.556018 . [all data]

Suess, Liu, et al., 2003
Suess, L.; Liu, Y.; Parthasarathy, R.; Dunning, F.B., Dipole-bound negative ions: Collisional destruction and blackbody-radiation-induced photodetachment, J. Chem. Phys., 2003, 119, 24, 12890-12894, https://doi.org/10.1063/1.1628215 . [all data]

Bailey, Dessent, et al., 1996
Bailey, C.G.; Dessent, C.E.H.; Johnson, M.A.; Bowen, K.A., Jr., Vibronic Effects in the Photon Energy Dependent Photoelectron Spectra of the CH3CN- Dipole-bound Anion, J. Chem. Phys., 1996, 104, 18, 6976, https://doi.org/10.1063/1.471415 . [all data]

Desfrancois, Abdoul-Carime, et al., 1994
Desfrancois, C.; Abdoul-Carime, H.; Khelifa, N.; Schermann, J.P., Fork 1/r to 1/r2 Potentials: Electron Exchange between Rydberg Atoms and Polar Molecules, Phys. Rev. Lett., 1994, 73, 18, 2436, https://doi.org/10.1103/PhysRevLett.73.2436 . [all data]

Williams, Denault, et al., 2001
Williams, T.I.; Denault, J.W.; Cooks, R.G., Proton Affinity of Deuterated Acetonitrile Estimated by the Kinetic Method with Full Entropy Analysis, Int. J. Mass Spectrom., 2001, 210/211, 133. [all data]

Gochel-Dupuis, Delwiche, et al., 1992
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Notes

Go To: Top, Condensed phase thermochemistry data, Gas phase ion energetics data, Ion clustering data, Mass spectrum (electron ionization), References


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