首页> 外文期刊>Journal of the American Chemical Society >Why are BINOL-based monophosphites such efficient ligands in Rh-catalyzed asymmetric olefin hydrogenation?
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Why are BINOL-based monophosphites such efficient ligands in Rh-catalyzed asymmetric olefin hydrogenation?

机译:为什么BINOL基单亚磷酸酯在Rh催化的不对称烯烃加氢中如此有效的配体?

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摘要

Whereas recent synthetic studies concerning Rh-catalyzed olefin hydrogenation based on BINOL-derived monodentate phosphites have resulted in an efficient and economically attractive preparative method, very little is known concerning the source of the unexpectedly high levels of enantioselectivity (ee often 90-99%). The present mechanistic study, which includes the NMR characterization of the precatalysts, kinetic measurements with focus on nonlinear effects, and DFT calculations, constitutes a first step in understanding this hydrogenation system. The two most important features which have emerged from these efforts are the following: (1) two monodentate P-ligands are attached to rhodium, and (2) the lock-and-key mechanism holds, in which the thermodynamics of Rh/olefin complexation with formation of the major and minor diastereomeric intermediates dictates the stereochemical outcome. The major diastereomer leads to the favored enantionneric product, which is opposite to the state of affairs in classical Rh-catalyzed olefin hydrogenation based on chiral chelating diphosphines (anti lock-and-key mechanism as proposed by Halpern).
机译:尽管最近有关基于BINOL衍生的单齿亚磷酸酯进行Rh催化的烯烃加氢的合成研究已产生了一种高效且经济上有吸引力的制备方法,但对意料之外的高对映选择性的来源知之甚少(ee通常为90-99%) 。目前的机理研究包括对预催化剂的NMR表征,着重于非线性效应的动力学测量以及DFT计算,是理解该氢化系统的第一步。这些努力中出现的两个最重要的特征如下:(1)两个单齿P-配体连接到铑上;(2)锁定和键机制成立,其中Rh /烯烃络合的热力学主要和次要非对映异构体中间体的形成决定了立体化学结果。主要的非对映异构体产生了受欢迎的对映体产物,这与基于手性螯合二膦的经典Rh催化的烯烃加氢反应的状态相反(Halpern提出的反锁键机制)。

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