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首页> 外文期刊>Advanced synthesis & catalysis >Asymmetric Activation/Deactivation of Racemic Ru Catalysts for Highly Enantioselective Hydrogenation Irrespective of Ketonic Substrates: Molecular Design of Dimethylbinaphthylamine for Enantiomeric Catalysts Discrimination
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Asymmetric Activation/Deactivation of Racemic Ru Catalysts for Highly Enantioselective Hydrogenation Irrespective of Ketonic Substrates: Molecular Design of Dimethylbinaphthylamine for Enantiomeric Catalysts Discrimination

机译:外消旋Ru催化剂的不对称活化/失活,无论酮基底物如何,对映体均具有高对映选择性:用于对映体催化剂的二甲基联萘胺的分子设计

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摘要

Asymmetric activation and deactivation of racemic catalysts are two extremes in asymmetric catalysis. In a combination of these two protocols, higher enantioselectivity can be achieved by maximizing the difference in catalytic activity between the enantiomers of racemic catalysts through selective activation and deactivation of enantiomeric catalysts. 3,3'-Dimethyl-2,2'-diamino-1,1'-binaphthyl (DM-DABN) is thus designed as a chiral poison (deactivator) for complete enantiomer resolution of racemic BINAP-Ru(II) catalysts. The catalyst system of DM-DABN, 1,2-diphenylethylenediamine (DPEN), and racemic BINAP-Ru(II) led to great success in highly enantioselective hydrogenation irrespective of the ketonic substrates. The lower catalytic activity of the BINAP-Ru(II)/DM-DABN complex stems from the electron delocalization from the Ru center to the diamine moiety in contrast to the BINAP-Ru(II)/DPEN complex where the highest electron densities are localized on the Ru-N region. The present 'asymmetric activation/deactivation protocol' can provide a guiding principle for the rational design of a molecule for enantiomeric discrimination between racemic catalysts.
机译:外消旋催化剂的不对称活化和失活是不对称催化的两个极端。在这两种方案的组合中,可以通过对映异构体催化剂的选择性活化和失活来最大化外消旋催化剂的对映异构体之间催化活性的差异,从而实现更高的对映选择性。因此,将3,3'-二甲基-2,2'-二氨基-1,1'-联萘(DM-DABN)设计为手性毒物(减活剂),用于完全拆分外消旋BINAP-Ru(II)催化剂的对映体。 DM-DABN,1,2-二苯基乙二胺(DPEN)和外消旋BINAP-Ru(II)的催化剂体系无论酮基体如何,都在高对映选择性氢化方面取得了巨大成功。 BINAP-Ru(II)/ DM-DABN配合物的较低催化活性是由于电子从Ru中心到二胺部分的离域作用,而BINAP-Ru(II)/ DPEN配合物的电子密度最高。在Ru-N地区。当前的“不对称活化/失活方案”可以为合理设计外消旋催化剂之间对映体区别的分子提供指导原则。

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