H+ (structure unspecified)


Gas phase ion energetics 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.

Reactions leading to H+ (ion structure unspecified)

Precursor AP (eV) Other Products Method Reference Comment
CHCl320.5 ± 1.74H+CCl3EIOgawa, Miyoshi, et al., 1982 
CHN15.18 ± 0.02CN-PIBerkowitz, Chupka, et al., 1969 
CHN19.00 ± 0.01CNPIBerkowitz, Chupka, et al., 1969 
CH2O17.41 ± 0.07CHOPIWarneck, 1971 
CH421.3 ± 0.3CH3EILocht, Olivier, et al., 1979 
CH424.0 ± 0.5CH3EIAppell and Kubach, 1971 
C2H218.83 ± 0.23C2HEIDavister and Locht, 1994 
C2H223. ± 1.?PICooper, Ibuki, et al., 1988 
C2H219.35 ± 0.05C2HPIShiromaru, Achiba, et al., 1987 
C2H220.6 ± 0.3?EISuzuki and Maeda, 1977 
C2H225.6 ± 1.0CH+CEIKusch, Hustrulid, et al., 1937 
C2H221.7 ± 1.0C2+HEIKusch, Hustrulid, et al., 1937 
C2H3Cl18.63 ± 0.05C2H2ClPISheng, Qi, et al., 1995 
C2H418.66 ± 0.05C2H3C2H3Shiromaru, Achiba, et al., 1987 
C2H426.2 ± 1.5C2H3EIKusch, Hustrulid, et al., 1937 
C2H621. ± 1.?PIAu, Cooper, et al., 1993 
C2H623.5 ± 0.5?EISuzuki and Maeda, 1977, 2 
C2H6O21.0 ± 0.5CH2+CH2OHEIStepanov, Perov, et al., 1988 
C2H6OS23. ± 0.5?EIBlais, Cottin, et al., 1970 
C3H620. ± 1.?EIPeers and Vigny, 1968 
C3H822. ± 1.?PIAu, Cooper, et al., 1993 
C3H820.0 ± 0.3?EIEhrhardt and Tekaat, 1964 
HCl14.5Cl-EIFox, 1957 
HF19.42 ± 0.01FPIBerkowitz, Ellison, et al., 1994 
HF19.444FPIBerkowitz and Wahl, 1973 
HF16.061 ± 0.005F-PIBerkowitz, Chupka, et al., 1971 
HF19.45 ± 0.01FPIBerkowitz, Chupka, et al., 1971, 2 
HF>19.44 ± 0.02FPEBrundle, 1970 
H218.078 ± 0.003HPIPECOWeitzel, Mahnert, et al., 1994T = 0K
H218.0 ± 0.2HEICrowe and McConkey, 1973 
H217.28 ± 0.16H-EILocht and Momigny, 1971 
H217.3H-EICurran, Laboratories 
H2O16.95 ± 0.05OHEILefaivre and Marmet, 1978 
H2O18.7 ± 0.05OH(X2P)EIAppell and Durup, 1973 
H2O16.0 ± 0.3OH-EICottin, 1959 
H2O19.6 ± 0.25OHEICottin, 1959 
H3N18.57H2NPIQi, Sheng, et al., 1995 

References

Go To: Top, Gas phase ion energetics data, Notes

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

Ogawa, Miyoshi, et al., 1982
Ogawa, T.; Miyoshi, F.; Higo, M., Translational energy distribution and relative emission cross section of excited hydrogen atom produced in electron-chloroform collisions, Bull. Chem. Soc. Jpn., 1982, 55, 1790. [all data]

Berkowitz, Chupka, et al., 1969
Berkowitz, J.; Chupka, W.A.; Walter, T.A., Photoionization of HCN: the electron affinity and heat of formation of CN, J. Chem. Phys., 1969, 50, 1497. [all data]

Warneck, 1971
Warneck, P., Photoionisation von methanol und formaldehyd, Z. Naturforsch. A:, 1971, 26, 2047. [all data]

Locht, Olivier, et al., 1979
Locht, R.; Olivier, J.L.; Momigny, J., Dissociative autoionization as a mechanism for the proton formation from methane and methane-d4 by low energy electron impact, Chem. Phys., 1979, 43, 425. [all data]

Appell and Kubach, 1971
Appell, J.; Kubach, C., On the formation of energetic protons by electron impact on methane, Chem. Phys. Lett., 1971, 11, 486. [all data]

Davister and Locht, 1994
Davister, M.; Locht, R., The dissociative electroionization of C2H2, C2D2 and C2HD. Investigation of the [C2H(D)]+ and [H(D)]+ dissociation channels. The (D)H-C2H(D) binding energy, Chem. Phys., 1994, 189, 805. [all data]

Cooper, Ibuki, et al., 1988
Cooper, G.; Ibuki, T.; Iida, Y.; Brion, C.E., Absolute dipole oscillator strengths for photoabsorption and the molecular and dissociative photoionization of acetylene, Chem. Phys., 1988, 125, 307. [all data]

Shiromaru, Achiba, et al., 1987
Shiromaru, H.; Achiba, Y.; Kimura, K.; Lee, Y.T., Determination of the C-H bond dissociation energies of ethylene and acetylene by observation of the threshold energies of H+ formation by synchrotron radiation, J. Phys. Chem., 1987, 91, 17. [all data]

Suzuki and Maeda, 1977
Suzuki, I.H.; Maeda, K., Ionization efficiency curves of acetylene by electron impact, Mass Spectrosc. (Tokyo), 1977, 25, 223. [all data]

Kusch, Hustrulid, et al., 1937
Kusch, P.; Hustrulid, A.; Tate, J.T., The dissociation of HCN, C2H2, C2N2 and C2H4 by electron impact, Phys. Rev., 1937, 52, 843. [all data]

Sheng, Qi, et al., 1995
Sheng, L.; Qi, F.; Tao, L.; Zhang, Y.; Yu, S.; Wong, C.-K.; Li, W.-K., Experimental and theoretical studies of the photoionization and dissociative photoionization of vinyl chloride, Int. J. Mass Spectrom. Ion Processes, 1995, 148, 179. [all data]

Au, Cooper, et al., 1993
Au, J.W.; Cooper, G.; Brion, C.E., The molecular and dissociative photoionization of ethane, propane, and n-butane: Absolute oscillator strengths (10-80 eV) and breakdown pathways, Chem. Phys., 1993, 173, 241. [all data]

Suzuki and Maeda, 1977, 2
Suzuki, I.H.; Maeda, K., Behavior of hydrogen atoms in the fragmentation of CH3CD3, Can. J. Chem., 1977, 55, 3124. [all data]

Stepanov, Perov, et al., 1988
Stepanov, A.N.; Perov, A.A.; Kabanov, S.P.; Simonov, A.P., Formation of long-lived, highly excited atoms during dissociative excitation of CH3CN, CH3CH2OH, CH3COOH, HCOOH, and C4H4S molecules on electron impact, Russ. J. Phys. Chem., 1988, 22, 81. [all data]

Blais, Cottin, et al., 1970
Blais, J.-C.; Cottin, M.; Gitton, B., Ionisation positive et negative dans le dimethylsulfoxyde en phase gazeuse, J. Chim. Phys., 1970, 67, 1475. [all data]

Peers and Vigny, 1968
Peers, A.M.; Vigny, P., Reactions molecule-ion dans le propylene, J. Chim. Phys., 1968, 65, 805. [all data]

Ehrhardt and Tekaat, 1964
Ehrhardt, H.; Tekaat, T., Auftrittspotentialmessungen an ionisierten Molekulbruchstucken mit kinetischer Anfangsenergie, Z. Naturforsch., 1964, 19a, 1382. [all data]

Fox, 1957
Fox, R.E., Negative ion formation in hydrogen chloride by electron impact, J. Chem. Phys., 1957, 26, 1281. [all data]

Berkowitz, Ellison, et al., 1994
Berkowitz, J.; Ellison, G.B.; Gutman, D., Three methods to measure RH bond energies, J. Phys. Chem., 1994, 98, 2744. [all data]

Berkowitz and Wahl, 1973
Berkowitz, J.; Wahl, A.C., The dissociation energy of fluorine, Adv. Fluorine Chem., 1973, 7, 147. [all data]

Berkowitz, Chupka, et al., 1971
Berkowitz, J.; Chupka, W.A.; Guyon, P.M.; Holloway, J.H.; Spohr, R., Photoionization mass spectrometric study of F2, HF, and DF, J. Chem. Phys., 1971, 54, 5165. [all data]

Berkowitz, Chupka, et al., 1971, 2
Berkowitz, J.; Chupka, W.A.; Guyon, P.M.; Holloway, J.; Spohr, R., Photo-ionization studies of F2, HF, DF, and the xenon fluorides, Advan. Mass Spectrom., 1971, 5, 112. [all data]

Brundle, 1970
Brundle, C.R., Ionization and dissociation energies of HF and DF and their bearing on D(F2), Chem. Phys. Lett., 1970, 7, 317. [all data]

Weitzel, Mahnert, et al., 1994
Weitzel, K.-M.; Mahnert, J.; Penno, M., ZEKE-PEPICO investigations of dissociation energies in ionic reactions, Chem. Phys. Lett., 1994, 224, 371. [all data]

Crowe and McConkey, 1973
Crowe, A.; McConkey, J.W., Dissociative ionization by electron impact. I. Protons from H2, J. Phys. B:, 1973, 6, 2088. [all data]

Locht and Momigny, 1971
Locht, R.; Momigny, J., Mass spectrometric study of ion-pair processes in diatomic molecules: H2, CO, NO and O2, Int. J. Mass Spectrom. Ion Phys., 1971, 7, 121. [all data]

Curran, Laboratories
Curran, R.K., Negative ion formation in various gases at pressures up to .5 mm of Hg, Scientific Paper 62-908-113-P7, Westinghouse Research, Laboratories, Pittsburgh, 1962. [all data]

Lefaivre and Marmet, 1978
Lefaivre, D.; Marmet, P., Electroionization of D2O and H2O and study of fragments H+ and OH+, Can. J. Phys., 1978, 56, 1549. [all data]

Appell and Durup, 1973
Appell, J.; Durup, J., The formation of protons by impact of low energy electrons on water molecules, Int. J. Mass Spectrom. Ion Phys., 1973, 10, 247. [all data]

Cottin, 1959
Cottin, M., Etude des ions produits par impact electronique dans la vapeur d'eau, J. Chim. Phys., 1959, 56, 1024. [all data]

Qi, Sheng, et al., 1995
Qi, F.; Sheng, L.; Zhang, Y.; Yu, S.; Li, W.-K., Experimental and theoretical study of the dissociation energies DO(H2N-H) and DO(H2N+-H) and other related quantities, Chem. Phys. Lett., 1995, 234, 450. [all data]


Notes

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