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氰化物催化的交叉硅基安息香反应的机理与范围

Mechanism and scope of the cyanide-catalyzed cross silyl benzoin reaction.

作者信息

Linghu Xin, Bausch Cory C, Johnson Jeffrey S

机构信息

Department of Chemistry, University of North Carolina, Chapel Hill, NC 27599-3290, USA.

出版信息

J Am Chem Soc. 2005 Feb 16;127(6):1833-40. doi: 10.1021/ja044086y.

Abstract

In this work, cross silyl benzoin addition reactions between acylsilanes (1) and aldehydes (2) catalyzed by metal cyanides are described. Unsymmetrical aryl-, heteroaryl-, and alkyl-substituted benzoin adducts can be generated in moderate to excellent yields with complete regiocontrol using potassium cyanide and a phase transfer catalyst. From a screen of transition metal cyanide complexes, lanthanum tricyanide was identified as an improved second-generation catalyst for the cross silyl benzoin reaction. A study of the influence of water on the KCN-catalyzed cross silyl benzoin addition revealed more practical reaction conditions using unpurified solvent under ambient conditions. A sequential silyl benzoin addition/cyanation/O-acylation reaction that resulted in two new C-C bonds was achieved in excellent yield. The mechanism of cross silyl benzoin addition is proposed in detail and is supported by crossover studies and a number of unambiguous experiments designed to ascertain the reversibility of key steps. No productive chemistry arises from cyanation of the more electrophilic aldehyde component. Formation of the carbon-carbon bond is shown to be the last irreversible step in the reaction.

摘要

在本工作中,描述了金属氰化物催化的酰基硅烷(1)与醛(2)之间的交叉硅基安息香加成反应。使用氰化钾和相转移催化剂,可以以中等至优异的产率生成不对称芳基、杂芳基和烷基取代的安息香加合物,且具有完全的区域选择性。通过对过渡金属氰化物配合物的筛选,发现三氰化镧是用于交叉硅基安息香反应的改进型第二代催化剂。对水对KCN催化的交叉硅基安息香加成反应影响的研究表明,在环境条件下使用未纯化的溶剂可得到更实用的反应条件。通过连续的硅基安息香加成/氰化/O-酰化反应,以优异的产率实现了两个新C-C键的形成。详细提出了交叉硅基安息香加成的机理,并得到交叉实验以及旨在确定关键步骤可逆性的一系列明确实验的支持。亲电性更强的醛组分的氰化反应未产生有效化学过程。碳-碳键的形成被证明是该反应中最后一个不可逆步骤。

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