首页> 外文期刊>Journal of Catalysis >Water-resistant solid Lewis acid catalysts: Meerwein-Ponndorf-Verley and Oppenauer reactions catalyzed by tin-beta zeolite
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Water-resistant solid Lewis acid catalysts: Meerwein-Ponndorf-Verley and Oppenauer reactions catalyzed by tin-beta zeolite

机译:防水固体路易斯酸催化剂:锡-β沸石催化的Meerwein-Ponndorf-Verley和Oppenauer反应

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The catalytic activity of Sn-beta zeolite in the Meerwein-Pondorf-Verley (MPV) reduction of carbonyl compounds with secondary alcohols as reductants and Oppenauer oxidation of alcohols were performed with quantitative yields to the corresponding product. This catalyst exhibits a behavior not observed with Ti- and Al-beta zeolites, with excellent activity and selectivity even after four catalytic recycles, and good stereoselectivities to the thermodynamic less favorable cis-alcohol isomer when alkyl-cylohexanones were used as substrates. A prochiral ketone has been reduced within an enantiomeric excess close to 50% when using a chiral alcohol as the reducing reactant. Other transition metals incorporated in the beta zeolite framework (V or B) led to poor catalytic activities for this reaction. IR studies using cyclohexanone as probe molecule over beta zeolites demonstrated that the more specific Lewis acid sites in the framework of Sn-beta are responsibles for its better catalytic activity with respect to Ti- or Al-beta. The influence of the structure of the alcohol and ketone shows that reaction transition states that by size can be fitted within the pore of beta may have problems forming on the Lewis acid sites due to the shielding effect of the neighbor framework oxygen atoms. Finally, Sn-beta containing organic groups attached to the structure is able to perform the MPV in the presence of water, offering a real alternative to conventional aluminum iso-propoxide catalysts. (C) 2003 Elsevier Science (USA). All rights reserved. [References: 25]
机译:Sn-β沸石在Meerwein-Pondorf-Verley(MPV)中以仲醇为还原剂还原羰基化合物和醇的Oppenauer氧化反应中的催化活性以定量收率得到了相应的产物。该催化剂表现出用Ti-和Al-β沸石未观察到的行为,即使在四个催化循环后仍具有出色的活性和选择性,并且当烷基环己酮用作底物时,对热力学较差的顺式醇异构体具有良好的立体选择性。当使用手性醇作为还原反应物时,手性酮已被还原成对映体过量接近50%。掺入β沸石骨架中的其他过渡金属(V或B)导致该反应的催化活性差。使用环己酮作为探针分子对β沸石进行的IR研究表明,Sn-β骨架中更特定的路易斯酸位点是其对Ti-或Al-β更好的催化活性的原因。醇和酮的结构的影响表明,按尺寸大小可以装配在β孔中的反应过渡态可能由于相邻骨架氧原子的屏蔽作用而在路易斯酸位上形成问题。最后,附着在结构上的含有有机基团的Sn-beta能够在水的存在下执行MPV,为常规的异丙醇铝催化剂提供了真正的替代品。 (C)2003 Elsevier Science(美国)。版权所有。 [参考:25]

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