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使用钒/钯同时双催化合成 α-烯丙基-α,β-不饱和羰基化合物。

Synthesis of α-allylated α,β-unsaturated carbonyl compounds using vanadium/palladium contemporaneous dual catalysis.

机构信息

Department of Chemistry, Stanford University, Stanford, California, USA.

出版信息

Nat Protoc. 2012 Jul 12;7(8):1497-501. doi: 10.1038/nprot.2012.076.

Abstract

This protocol describes a new approach for the preparation of α-allylated α,β-unsaturated carbonyl compound by chemoselective cross-coupling of propargyl alcohols with allyl carbonates using an unprecedented vanadium/palladium contemporaneous dual catalysis. This process involves 1,3-transposition of propargyl alcohols by an oxyvanadium catalyst to generate vanadium allenoates and the activation of allyl carbonates by a palladium catalyst to generate π-allylpalladium species. These two active intermediates trap each other more rapidly to afford the observed product, rather than being intercepted by the large excess of starting propargyl alcohol. One example for the preparation of this type of α-allylated α,β-unsaturated carbonyl compound is included in the text. It takes ~20 h to complete the protocol: 1.0 h to set up the reaction, 16 h for the reaction and 2.0 h for isolation and purification. This chemistry has been applied to obtain a wide range of α-allylated α,β-unsaturated ketones, esters and amides, which are highly valuable building blocks in organic synthesis.

摘要

本方案描述了一种通过炔丙醇与碳酸烯丙酯的选择性交叉偶联,使用前所未有的钒/钯同时双催化,来制备α-烯丙基-α,β-不饱和羰基化合物的新方法。该过程涉及通过氧钒催化剂对炔丙醇进行 1,3-迁移,生成钒烯丙酸盐,然后通过钯催化剂对碳酸烯丙酯进行活化,生成π-烯丙基钯物种。这两种活性中间体相互迅速捕获,生成观察到的产物,而不是被大量过量的起始炔丙醇拦截。本文案中包含了制备这种类型的α-烯丙基-α,β-不饱和羰基化合物的一个实例。完成该方案大约需要 20 小时:1.0 小时用于设置反应,16 小时用于反应,2.0 小时用于分离和纯化。该化学方法已被应用于获得广泛的α-烯丙基-α,β-不饱和酮、酯和酰胺,这些都是有机合成中非常有价值的构建块。

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