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手性金属簇Lewis酸/碱协同催化剂催化醛的不对称氰基硅基化反应

Asymmetric Cyanosilylation of Aldehydes by a Lewis Acid/Base Synergistic Catalyst of Chiral Metal Clusters.

作者信息

Weng Zhen-Zhang, Xie Jing, Huang Kai-Xin, Li Jun-Ping, Long La-Sheng, Kong Xiang-Jian, Zheng Lan-Sun

机构信息

Collaborative Innovation Center of Chemistry for Energy Materials, State Key Laboratory of Physical Chemistry of Solid Surfaces and Department of Chemistry, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, China.

出版信息

Inorg Chem. 2022 Mar 7;61(9):4121-4129. doi: 10.1021/acs.inorgchem.1c03916. Epub 2022 Feb 24.

Abstract

Metal clusters with well-defined crystal structures are extremely useful for studying the synergistic catalytic effects and associated catalytic mechanisms. In this study, two pairs of chiral lanthanide-transition metal clusters (Ln = Tb or Dy) were synthesized using Schiff-base ligands [()- or ()-HL] with multiple Lewis base sites (O sites). The as-prepared chiral metal clusters exhibited good catalytic functionality in the asymmetric synthesis of chiral cyanohydrins, with high conversions of up to 99% and medium-to-high enantiomeric excess values of up to 78%. The catalysis process followed a mechanism in which the bifunctional metal clusters of , containing Lewis acid sites and Lewis base sites, simultaneously activated the aldehydes and trimethylsilyl cyanide, respectively. Consequently, synergistic catalysis was realized. The enantioselectivity of the different aldehydes and stereochemical configuration of the resulting products are attributed to the formation of a steric chiral pocket via the external chiral ligands on the clusters. In addition, heterogeneous asymmetric cyanosilylation using chiral metal clusters achieved high chemoselectivity and regioselectivity under mild conditions.

摘要

具有明确晶体结构的金属簇对于研究协同催化效应及相关催化机理极为有用。在本研究中,使用具有多个路易斯碱位点(O位点)的席夫碱配体[()-或()-HL]合成了两对手性镧系-过渡金属簇(Ln = Tb或Dy)。所制备的手性金属簇在手性氰醇的不对称合成中表现出良好的催化功能,转化率高达99%,对映体过量值中等至高,可达78%。催化过程遵循一种机理,即含有路易斯酸位点和路易斯碱位点的双功能金属簇分别同时活化醛和三甲基硅基氰化物。因此,实现了协同催化。不同醛的对映选择性和所得产物的立体化学构型归因于通过簇上的外部手性配体形成空间手性口袋。此外,使用手性金属簇的多相不对称氰基硅烷化在温和条件下实现了高化学选择性和区域选择性。

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