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首页> 外文期刊>Catalysis Today >Enantioselective hydrogenation of isophorone and kinetic resolution of 3,3,5-trimethylcyclohexanone over Pd catalysts in the presence of (S)-prorine
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Enantioselective hydrogenation of isophorone and kinetic resolution of 3,3,5-trimethylcyclohexanone over Pd catalysts in the presence of (S)-prorine

机译:(S)-脯氨酸存在下Pd催化剂上异佛尔酮的对映选择性加氢和3,3,5-三甲基环己酮的动力学拆分

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摘要

Enantioselective hydrogenation of isophorone and kinetic resolution of 3,3,5-trimethylcyclohexanone (TMCH) over Pd catalysts in the presence of (S)-proline revealed that the enantioselectivity for hydrogenation of isophorone was mainly originated from the kinetic resolution of TMCH. The rapid hydrogenation of isophorone primarily yielded racemic TMCH, and the followed kinetic resolution consumed the (R)-TMCH enantiomer, leaving the (S)-TMCH enantiomer in excess. The kinetic resolution of racemic TMCH is closely related to the acidic/basic properties of the support, and the addition of K2CO3 to Al2o3 provided more enantio-differentiating environment through the enhanced adsorption of (S)-proline on the catalyst surface. As a result, the Pd/Al2O3-K2CO3 catalyst with finely dispersed Pd particles and enhanced adsorption of (S)-proline gave very high enantioselectivities (e.e. value up to 98%) for the enantioselective hydrogenation of isophorone.
机译:在(S)-脯氨酸存在下,Pd催化剂上异佛尔酮的对映选择性氢化和3,3,5-三甲基环己酮(TMCH)的动力学拆分表明,异佛尔酮氢化的对映选择性主要源于TMCH的动力学拆分。异佛尔酮的快速氢化主要产生外消旋的TMCH,随后的动力学拆分消耗了(R)-TMCH对映异构体,剩余了(S)-TMCH对映异构体。外消旋TMCH的动力学拆分与载体的酸/碱性质密切相关,并且通过增强(S)-脯氨酸在催化剂表面的吸附,向Al2o3中添加K2CO3提供了更多的对映异构环境。结果,具有精细分散的Pd颗粒和增强的(S)-脯氨酸吸附的Pd / Al 2 O 3 -K 2 CO 3催化剂对于异佛尔酮的对映选择性加氢具有非常高的对映选择性(例如,值高达98%)。

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