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Theoretical study of reaction mechanisms for the ketonization of vinyl alcohol in gas phase and aqueous solution
Authors:Oscar N Ventura  Agustí Lledós  Rosanna Bonaccorsi  Juan Bertrán  Jacopo Tomasi
Institution:(1) Facultad de Química, Cátedra de Química Cuántica, C.C. 1157 Montevideo, Uruguay;(2) Department de Quimica-Fisica, Facultat de Ciencies, Universitat Autónoma de Barcelona, Bellaterra, Barcelona, Spain;(3) Istituto di Chimica Quantistica ed Energetica Molecolare del C.N.R., Univerità di Pisa, Via Risorgimento 35, I-56100 Pisa, Italy;(4) Departamento di Chimica e Chimica Industriale, Università di Pisa, Via Risorgimento 35, I-56100 Pisa, Italy
Abstract:Theoretical ab initio calculations are done on different mechanisms for the conversion of vinyl alcohol to acetaldehyde, both in gas phase and in solution. Several basis sets are used in order to assess the accuracy of the results in gas phase and a continuum model of the solvent is employed to mimic reactions in water solution. The results indicate a catalytic action of water in hydrated clusters in gas phase, whereas in solution, and within the error limits of our calculations, both neutral water-chain and ionic mechanisms appear to be equally probable. Finally, the action of acids or bases is tested through the analysis of the reaction of vinyl alcohol with H3O+ and HO. The results of the calculations are shown to be in qualitative agreement with the experimental facts when 6-31++G basis set is used but not when either STO-3G or 4-31G basis sets are employed.
Keywords:Vinyl alcohol  Keto-enolic tautomerism  Ab initio methods  Solvation energy
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