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路易斯碱位置在不对称双功能催化中的关键作用:一种新型手性多金属催化剂配体的设计与评估

Key role of the Lewis base position in asymmetric bifunctional catalysis: design and evaluation of a new ligand for chiral polymetallic catalysts.

作者信息

Fujimori Ikuo, Mita Tsuyoshi, Maki Keisuke, Shiro Motoo, Sato Akihiro, Furusho Sanae, Kanai Motomu, Shibasaki Masakatsu

机构信息

Graduate School of Pharmaceutical Sciences, The University of Tokyo, Tokyo 113-0033, Japan.

出版信息

J Am Chem Soc. 2006 Dec 27;128(51):16438-9. doi: 10.1021/ja067003h.

Abstract

New chiral ligands for asymmetric polymetallic catalysts were designed on the basis of the assumption that the higher-order assembly structure is stabilized by modifying the modular unit. The designed ligands 6 and 7 contained a scaffolding cyclohexane ring with a Lewis base phosphine oxide directly attached to the scaffold. A module in the polymetallic complex contains two metals per ligand, and a stable 6-, 5-, 5-membered fused chelation ring system should be generated. Synthesis of these ligands is simple and high yielding, using a catalytic dynamic kinetic resolution promoted by the Trost catalyst as a key step. Ligand function was assessed in a catalytic asymmetric ring-opening reaction of meso-aziridines with TMSCN, a useful reaction for the synthesis of optically active beta-amino acids. The Gd complex generated from Gd(OiPr)3 and the ligand was a highly active and enantioselective catalyst in this reaction. Enantioselectivity was reversed compared to the previously reported d-glucose-derived catalyst containing the same chirality of the individual module. ESI-MS analysis and X-ray crystallographic studies indicate that the assembly state of the modules in the polymetallic catalysts differs depending on the chiral ligand. The difference in the higher-order structure stems from a subtle change (one carbon) in the position of the Lewis base relative to the Gd metal. The change in the higher-order structure of the polymetallic complex led to a dramatic reversal of the enantioselectivity and increased catalyst activity.

摘要

基于通过修饰模块化单元来稳定高阶组装结构的假设,设计了用于不对称多金属催化剂的新型手性配体。所设计的配体6和7含有一个带有直接连接在支架上的路易斯碱氧化膦的支架环己烷环。多金属配合物中的一个模块每个配体包含两种金属,并且应该生成一个稳定的6、5、5元稠合螯合环系统。这些配体的合成简单且产率高,以Trost催化剂促进的催化动态动力学拆分作为关键步骤。在meso-氮丙啶与TMSCN的催化不对称开环反应中评估了配体功能,这是一种用于合成光学活性β-氨基酸的有用反应。由Gd(OiPr)3和该配体生成的Gd配合物在该反应中是一种高活性和对映选择性催化剂。与先前报道的含有相同手性的单个模块的d-葡萄糖衍生催化剂相比,对映选择性发生了反转。ESI-MS分析和X射线晶体学研究表明,多金属催化剂中模块的组装状态因手性配体而异。高阶结构的差异源于路易斯碱相对于Gd金属位置的细微变化(一个碳原子)。多金属配合物高阶结构的变化导致对映选择性的急剧反转并提高了催化剂活性。

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