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首页> 外文期刊>Nature Communications >Broad-spectrum kinetic resolution of alcohols enabled by Cu–H-catalysed dehydrogenative coupling with hydrosilanes
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Broad-spectrum kinetic resolution of alcohols enabled by Cu–H-catalysed dehydrogenative coupling with hydrosilanes

机译:Cu–H催化的脱氢与氢化硅烷偶联可实现醇的广谱动力学拆分

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摘要

The enantioselective silylation of racemic alcohols, where one enantiomer reacts faster than the other, is an alternative approach to established enzymatic and non-enzymatic acylation techniques. The existing art is either limited to structurally biased alcohols or requires elaborate catalysts. Simple substrates, such as benzylic and allylic alcohols, with no coordinating functionality in the proximity of the hydroxy group have been challenging in these kinetic resolutions. We report here the identification of a broadly applicable chiral catalyst for the enantioselective dehydrogenative coupling of alcohols and hydrosilanes with both the chiral ligand and the hydrosilane being commercially available. The efficiency of kinetic resolutions is characterized by the selectivity factor, that is, the ratio of the reaction rates of the fast-reacting over the slow-reacting enantiomer. The selectivity factors achieved with the new method are good for acyclic benzylic alcohols (≤170) and high for synthetically usefully cyclic benzylic (≤40.1) and allylic alcohols (≤159).
机译:外消旋醇的对映选择性甲硅烷基化(一种对映异构体比另一种对映体反应更快)是建立酶促和非酶促酰化技术的另一种方法。现有技术要么限于结构上偏斜的醇,要么需要精细的催化剂。在这些动力学拆分中,简单的底物,例如苄醇和烯丙醇,在羟基附近没有配位官能团一直是挑战。我们在此报告了醇和氢硅烷与手性配体和氢硅烷的对映选择性脱氢偶联的广泛适用的手性催化剂的鉴定。动力学拆分的效率由选择性因子表征,即,快速反应对映体与慢反应对映体的反应速率之比。用新方法获得的选择性因子对无环苄醇(≤170)好,对于合成有用的环状苯甲醇(≤40.1)和烯丙基醇(≤159)则高。

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