Allene

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Gas phase thermochemistry data

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

Data compiled by: Glushko Thermocenter, Russian Academy of Sciences, Moscow

Constant pressure heat capacity of gas

Cp,gas (cal/mol*K) Temperature (K) Reference Comment
7.96450.Thermodynamics Research Center, 1997Recommended values are in close agreement with those obtained from earlier statistical thermodynamics calculation [ Kilpatrick J.E., 1949].
8.602100.
9.756150.
11.07200.
13.31273.15
14.11298.15
14.17300.
17.23400.
19.84500.
22.01600.
23.84700.
25.41800.
26.77900.
27.961000.
29.021100.
29.921200.
30.711300.
31.411400.
32.031500.

Constant pressure heat capacity of gas

Cp,gas (cal/mol*K) Temperature (K) Reference Comment
9.711 ± 0.038148.2Kistiakowsky G.B., 1940Please also see Kistiakowsky G.B., 1940, 2.
9.916 ± 0.041157.8
11.36 ± 0.045213.1
11.54 ± 0.045218.4
11.72 ± 0.048223.7
12.74 ± 0.050258.0
13.20 ± 0.053272.16
14.18 ± 0.057300.00
15.25 ± 0.062334.00
16.22 ± 0.065366.45

Reaction thermochemistry data

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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:
B - John E. Bartmess
ALS - Hussein Y. Afeefy, Joel F. Liebman, and Stephen E. Stein
M - Michael M. Meot-Ner (Mautner) and Sharon G. Lias
RCD - Robert C. Dunbar

Note: Please consider using the reaction search for this species. This page allows searching of all reactions involving this species. A general reaction search form is also available. Future versions of this site may rely on reaction search pages in place of the enumerated reaction displays seen below.

Individual Reactions

C3H3- + Hydrogen cation = Allene

By formula: C3H3- + H+ = C3H4

Quantity Value Units Method Reference Comment
Δr380.0 ± 2.0kcal/molD-EARobinson, Polak, et al., 1995gas phase; Neutral acid: allene. Propyne would be 1.0 kcal/mol less acidic.; B
Δr381.4 ± 3.1kcal/molG+TSRobinson, Polak, et al., 1995gas phase; Relative to MeOH at 375.0; kinetic scheme factors in isomerization; B
Δr380.6 ± 2.1kcal/molD-EAOakes and Ellison, 1983gas phase; Neutral acid: allene. Propyne would be 1.0 kcal/mol less acidic.; B
Quantity Value Units Method Reference Comment
Δr372.8 ± 3.0kcal/molIMRERobinson, Polak, et al., 1995gas phase; Relative to MeOH at 375.0; kinetic scheme factors in isomerization; B
Δr372.0 ± 2.2kcal/molH-TSOakes and Ellison, 1983gas phase; Neutral acid: allene. Propyne would be 1.0 kcal/mol less acidic.; B

2Hydrogen + Allene = Propane

By formula: 2H2 + C3H4 = C3H8

Quantity Value Units Method Reference Comment
Δr-70.54 ± 0.25kcal/molChydKistiakowsky, Ruhoff, et al., 1936gas phase; Reanalyzed by Cox and Pilcher, 1970, Original value = -71.28 ± 0.20 kcal/mol; At 355 °K; ALS

(CAS Reg. No. 86046-90-4 • 4294967295Allene) + Allene = CAS Reg. No. 86046-90-4

By formula: (CAS Reg. No. 86046-90-4 • 4294967295C3H4) + C3H4 = CAS Reg. No. 86046-90-4

Quantity Value Units Method Reference Comment
Δr14.8 ± 3.7kcal/molTherBartmess and Burnham, 1984gas phase; value altered from reference due to change in acidity scale; B

(CAS Reg. No. 83268-51-3 • 4294967295Allene) + Allene = CAS Reg. No. 83268-51-3

By formula: (CAS Reg. No. 83268-51-3 • 4294967295C3H4) + C3H4 = CAS Reg. No. 83268-51-3

Quantity Value Units Method Reference Comment
Δr25.4 ± 2.4kcal/molN/ABartmess and Burnham, 1984gas phase; value altered from reference due to change in acidity scale; B

(CAS Reg. No. 1724-46-5 • 4294967295Allene) + Allene = CAS Reg. No. 1724-46-5

By formula: (CAS Reg. No. 1724-46-5 • 4294967295C3H4) + C3H4 = CAS Reg. No. 1724-46-5

Quantity Value Units Method Reference Comment
Δr50.2 ± 2.2kcal/molN/ABartmess, Scott, et al., 1979gas phase; value altered from reference due to change in acidity scale; B

Allene = Propyne

By formula: C3H4 = C3H4

Quantity Value Units Method Reference Comment
Δr-0.90 ± 0.50kcal/molCmCordes and Gunzler, 1959gas phase; Reanalyzed by Cox and Pilcher, 1970, Original value = -0.81 kcal/mol; ALS

(CAS Reg. No. 86046-88-0 • 4294967295Allene) + Allene = CAS Reg. No. 86046-88-0

By formula: (CAS Reg. No. 86046-88-0 • 4294967295C3H4) + C3H4 = CAS Reg. No. 86046-88-0

Quantity Value Units Method Reference Comment
Δr26.6 ± 9.4kcal/molTherBartmess and Burnham, 1984gas phase; Between H2O, MeOH; B

Rh+ + Allene = (Rh+ • Allene)

By formula: Rh+ + C3H4 = (Rh+ • C3H4)

Enthalpy of reaction

ΔrH° (kcal/mol) T (K) Method Reference Comment
53.0 (+4.6,-0.) CIDChen and Armetrout, 1995gas phase; guided ion beam CID; M

Chromium ion (1+) + Allene = (Chromium ion (1+) • Allene)

By formula: Cr+ + C3H4 = (Cr+ • C3H4)

Quantity Value Units Method Reference Comment
Δr42.0 ± 2.0kcal/molCIDTFisher and Armentrout, 1992propyne or allene; RCD

References

Go To: Top, Gas phase thermochemistry data, Reaction thermochemistry data, Notes

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

Thermodynamics Research Center, 1997
Thermodynamics Research Center, Selected Values of Properties of Chemical Compounds., Thermodynamics Research Center, Texas A&M University, College Station, Texas, 1997. [all data]

Kilpatrick J.E., 1949
Kilpatrick J.E., Heats, equilibrium constants, and free energies of formation of the C3 to C5 diolefins, styrene, and the methylstyrenes, J. Res. Nat. Bur. Stand., 1949, 42, 225-240. [all data]

Kistiakowsky G.B., 1940
Kistiakowsky G.B., Gaseous heat capacities. II, J. Chem. Phys., 1940, 8, 610-618. [all data]

Kistiakowsky G.B., 1940, 2
Kistiakowsky G.B., The low temperature gaseous heat capacities of certain C3 hydrocarbons, J. Chem. Phys., 1940, 8, 970-977. [all data]

Robinson, Polak, et al., 1995
Robinson, M.S.; Polak, M.L.; Bierbaum, V.M.; DePuy, C.H.; Lineberger, W.C., Experimental Studies of Allene, Methylacetylene, and the Propargyl Radical: Bond Dissociation Energies, Gas-Phase Acidities, and Ion-Molecule Chemistry, J. Am. Chem. Soc., 1995, 117, 25, 6766, https://doi.org/10.1021/ja00130a017 . [all data]

Oakes and Ellison, 1983
Oakes, J.M.; Ellison, B.G., Photoelectron spectroscopy of the allenyl anion CH2=C=CH-, J. Am. Chem. Soc., 1983, 105, 2969. [all data]

Kistiakowsky, Ruhoff, et al., 1936
Kistiakowsky, G.B.; Ruhoff, J.R.; Smith, H.A.; Vaughan, W.E., Heats of organic reactions. IV. Hydrogenation of some dienes and of benzene, J. Am. Chem. Soc., 1936, 58, 146-153. [all data]

Cox and Pilcher, 1970
Cox, J.D.; Pilcher, G., Thermochemistry of Organic and Organometallic Compounds, Academic Press, New York, 1970, 1-636. [all data]

Bartmess and Burnham, 1984
Bartmess, J.E.; Burnham, R., Effect of central substituents on the gas phase acidities of propenes, J. Org. Chem., 1984, 49, 1382. [all data]

Bartmess, Scott, et al., 1979
Bartmess, J.E.; Scott, J.A.; McIver, R.T., Jr., The gas phase acidity scale from methanol to phenol, J. Am. Chem. Soc., 1979, 101, 6047. [all data]

Cordes and Gunzler, 1959
Cordes, J.F.; Gunzler, H., Das propin/propadien-gleichgewicht, Chem. Ber., 1959, 92, 1055-1062. [all data]

Chen and Armetrout, 1995
Chen, Y.M.; Armetrout, P.B., Activation of C2H6, C3H8, and c-C3H6 by Gas-Phase Rh+ and the Thermochemistry of Rh-Ligand Complexes, J. Am. Chem. Soc., 1995, 117, 36, 9291, https://doi.org/10.1021/ja00141a022 . [all data]

Fisher and Armentrout, 1992
Fisher, E.R.; Armentrout, P.B., Activation of Alkanes by Cr+: Unique Reactivity of Ground-State Cr+(6S) and Thermochemistry of Neutral and Ionic Chromium-Carbon Bonds, J. Am. Chem. Soc., 1992, 114, 6, 2039, https://doi.org/10.1021/ja00032a017 . [all data]


Notes

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