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Crucial aspects in the design of chirally modified noble metal catalysts for asymmetric hydrogenation of activated ketones

机译:手性改性贵金属催化剂活性酮不对称加氢设计中的关键问题

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In view of the importance of optically pure chiral products there is ample reason to develop methods that facilitate their efficient production. Compared to the mostly applied homogeneous catalysts based on transition metals coordinated to suitable chiral ligands, heterogeneous chiral catalysts could offer several features that are beneficial for practical application such as stability, ease of catalyst separation and regeneration as well as straightforward access to continuous process operation. Various strategies have been developed for imparting chirality to catalytic active surfaces, among which the chiral modification of active metal surfaces by adsorption of suitable chiral organic compounds has so far been among the most successful. In this tutorial review lessons learned from research on asymmetric hydrogenation on chirally modified noble metals will be presented. Key aspects for the design of such catalysts will be elucidated using chirally modified platinum catalysts for the asymmetric hydrogenation of alpha-activated ketones as an example.
机译:考虑到光学纯手性产品的重要性,有充分的理由开发促进其有效生产的方法。与基于过渡金属配以合适的手性配体的,应用最广泛的均相催化剂相比,非均相手性催化剂可以提供一些对实际应用有益的功能,例如稳定性,催化剂分离和再生的简便性以及直接进行连续过程操作的能力。已经开发了各种方法来赋予催化活性表面手性,其中迄今为止,通过吸附合适的手性有机化合物对活性金属表面进行手性改性是最成功的。在本教程中,将介绍从手性修饰的贵金属的不对称氢化研究中获得的经验教训。作为示例,将使用用于α-活化的酮的不对称氢化的手性改性的铂催化剂来阐明这种催化剂设计的关键方面。

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