C2H5S+ (structure unspecified)
- Formula: C2H5S+
- Molecular weight: 61.126
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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 C2H5S+ (ion structure unspecified)
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.
Broer, Weringa, et al., 1979
Broer, W.J.; Weringa, W.D.; Nieuwpoort, W.C.,
Rearrangements and fragmentations of [C2H5S]+ ions,
Org. Mass Spectrom., 1979, 14, 543. [all data]
Zha, Nishimura, et al., 1988
Zha, Q.; Nishimura, T.; Meisels, G.G.,
Unimolecular dissociation of energy-selected dimethyl sulfoxide,
Int. J. Mass Spectrom. Ion Processes, 1988, 83, 1. [all data]
Amos, Gillis, et al., 1969
Amos, D.; Gillis, R.G.; Occolowitz, J.L.; Pisani, J.F.,
The ions [CH3S]+, [C2H5S]+ and [CH3O]+ formed by electron-impact,
Org. Mass Spectrom., 1969, 2, 209. [all data]
Ermolenko, Akopyan, et al., 1983
Ermolenko, A.I.; Akopyan, M.E.; Sergeev, Y.L.,
Decomposition of dimethyl sulfide molecular ions. Randomization of states during photoionization dissociation of molecules,
High Energy Chem., 1983, 17, 25. [all data]
Akopyan, Sergeev, et al., 1970
Akopyan, M.E.; Sergeev, Yu.L.; Vilesov, F.I.,
Photionization in vapors of aliphatic sulfides. I. Methymercaptan, dimethyl and diethyl sulfides,
High Energy Chem., 1970, 4, 265, In original 305. [all data]
Keyes and Harrson, 1968
Keyes, B.G.; Harrson, A.G.,
The fragmentation of aliphatic sulfur compounds by electron impact,
J. Am. Chem. Soc., 1968, 90, 5671. [all data]
Taft, Martin, et al., 1965
Taft, R.W.; Martin, R.H.; Lampe, F.W.,
Stabilization energies of substituted methyl cations. The effect of strong demand on the resonance order,
J. Am. Chem. Soc., 1965, 87, 2490. [all data]
Butler, Baer, et al., 1983
Butler, J.J.; Baer, T.; Evans, S.A., Jr.,
Energetics and structures of organosulfur ions: CH3SSCH3+, CH3SS+, C2H5S+, and CH2SH+,
J. Am. Chem. Soc., 1983, 105, 3451. [all data]
Conde-Caprace and Collin, 1972
Conde-Caprace, G.; Collin, J.E.,
Ionization and dissociation of cyclic ethers thioethers by electron-impact. A comparison between 1,3-dioxolane, 1,3-dithiolane and 1,3-oxathiolane,
Org. Mass Spectrom., 1972, 6, 415. [all data]
Conde-Caprace and Collin, 1969
Conde-Caprace, G.; Collin, J.E.,
Ionization and dissociation of cyclic ethers and thioethers by electronimpact. A comparison between 1,4 dioxane, 1,4 dithiane and 1,4 oxathiane,
Org. Mass Spectrom., 1969, 2, 1277. [all data]
Hobrock and Kiser, 1963
Hobrock, B.G.; Kiser, R.W.,
Electron impact investigations of sulfur compounds. II. 3-Methyl-2-thiabutane, 4-thia-1-pentene, and 3,4-dithiahexane,
J. Phys. Chem., 1963, 67, 648. [all data]
Gowenlock, Kay, et al., 1963
Gowenlock, B.G.; Kay, J.; Majer, J.R.,
Electron impact studies of some sulphides and disulphides,
J. Chem. Soc. Faraday Trans., 1963, 59, 2463. [all data]
Conde-Caprace and Collin, 1972, 2
Conde-Caprace, G.; Collin, J.E.,
Electron impact induced fragmentation of 1,3,6-dioxathiocane,
Org. Mass Spectrom., 1972, 6, 341. [all data]
Svec and Junk, 1967
Svec, H.J.; Junk, G.A.,
Electron-impact studies of substituted alkanes,
J. Am. Chem. Soc., 1967, 89, 790. [all data]
Notes
Go To: Top, Gas phase ion energetics data, References
- Data from NIST Standard Reference Database 69: NIST Chemistry WebBook
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