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1H NMR Study of the Mechanism of Ethyleneglycol Monoacetate Formation in Oxidative Acetoxylation of Ethylene Catalyzed by Pd(II) Complexes Full article

Conference New Developments in Selective Oxidation: International Symposium
18-22 Sep 1989 , Rimini
Source New Developments in Selective Oxidation : Proceedings of an International Symposium, Rimini, Italy, September 18-22, 1989
Compilation, 1990. 891 c. ISBN 9780444886941.
Journal Studies in Surface Science and Catalysis
ISSN: 0167-2991
Output data Year: 1990, Volume: 55, Pages: 213-220 Pages count : 8 DOI: 10.1016/S0167-2991(08)60151-2
Authors Gusevskaya E.V. 1 , Beck I.E. 1 , Stepanov A.G. 1 , Likholobov V.A. 1 , Zamaraev K.I. 1
Affiliations
1 Institute of Catalysis, Novosibirsk 630090, USSR

Abstract: A detailed mechanism of ethylene oxidation by Pd(NOn)CIL2 complexes (n=2,3; L=CD3CN) in a chloroform-acetic acid nmixture is studied by 1H N M R spectroscopy. The end reaction products are ethyleneglycol monoacetate (EGMA), acetaldehyde, nitroethylene and compounds with the general formula CH3-CHXY (X, Y = OH, OAc, Cl, NO2), whose ratio depends upon the solvent composition. Kinetic and spectral data obtained indicate the formation of a number of intermediates. The structure and routes of decomposition of the intermediates to EGMA and other reaction products are suggested.
Cite: Gusevskaya E.V. , Beck I.E. , Stepanov A.G. , Likholobov V.A. , Zamaraev K.I.
1H NMR Study of the Mechanism of Ethyleneglycol Monoacetate Formation in Oxidative Acetoxylation of Ethylene Catalyzed by Pd(II) Complexes
In compilation New Developments in Selective Oxidation : Proceedings of an International Symposium, Rimini, Italy, September 18-22, 1989. 1990. – C.213-220. – ISBN 9780444886941. DOI: 10.1016/S0167-2991(08)60151-2 WOS Scopus РИНЦ ANCAN OpenAlex
Dates:
Published print: Jan 1, 1990
Published online: Mar 4, 2008
Identifiers:
Web of science: WOS:A1990BQ92M00022
Scopus: 2-s2.0-77956928035
Elibrary: 30705829
Chemical Abstracts: 2010:1601960
Chemical Abstracts (print): 156:420900
OpenAlex: W168797892
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Web of science 2
Scopus 2
Elibrary 2
OpenAlex 2
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