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The role of acid catalysis in the Baeyer-Villiger reaction. A theoretical study

机译:酸催化在Baeyer-Villiger反应中的作用。理论研究

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Quantum mechanical calculations at the B3LYP/6-311+G(d,p) level have examined the overall mechanism of the Baeyer-Villiger (BV) reaction with peroxyacetic acid. A series of reactions that include both the addition step and the subsequent alkyl group migration step included ketones, acetone, t-butyl methyl ketone, acetophenone, cyclohexyl methyl ketone, and cyclohexyl phenyl ketone. The combined data suggested that the first step for addition of the peroxyacetic acid oxidation catalyst to the ketone carbonyl to produce the Criegee or tetrahedral intermediate is rate-limiting and has activation barriers that range from 38 to 41 kcal/mol without the aid of a catalyst. The rate of addition is markedly reduced by the catalytic action of a COOH functionality acting as a donor-acceptor group affecting both its proton transfer to the ketone C=O oxygen in concert with transfer of the OOH proton to the carboxylic acid carbonyl. The second or alkyl group migration step has a much reduced activation barrier, and its rate is not markedly influenced by acid catalysis. The rate of both steps in the BV reaction is greatly influenced by the catalytic action of very strong acids.
机译:在B3LYP / 6-311 + G(d,p)级的量子力学计算已经检查了Baeyer-Villiger(BV)与过氧乙酸反应的整体机理。包括加成步骤和随后的烷基迁移步骤的一系列反应包括酮,丙酮,叔丁基甲基酮,苯乙酮,环己基甲基酮和环己基苯基酮。综合数据表明,将过氧乙酸氧化催化剂添加到羰基酮中以生产Criegee或四面体中间体的第一步是限速的,并且在没有催化剂的情况下具有38-41 kcal / mol的活化势垒。通过作为供体-受体基团的COOH官能团的催化作用,显着降低了添加速率,这影响了其OHOH质子向羧酸羰基的转移,同时影响了质子向酮C = O氧的转移。第二或烷基迁移步骤具有大大降低的活化势垒,并且其速率不受酸催化作用的显着影响。 BV反应中两个步骤的速率都受到非常强酸的催化作用的极大影响。

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