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首页> 外文期刊>Angewandte Chemie >Highly Enantioselective Rhodium(I)-Catalyzed Carbonyl Carboacylations Initiated by C~C Bond Activation
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Highly Enantioselective Rhodium(I)-Catalyzed Carbonyl Carboacylations Initiated by C~C Bond Activation

机译:C〜C键活化引发的高度对映选择性的铑(I)催化的羰基碳酰化反应

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摘要

The lactone motif is ubiquitous in natural products and pharmaceuticals. The Tishchenko disproportionation of two aldehydes, a carbonyl hydroacylation, is an efficient and atom-economic access to lactones. However, these reaction types are limited to the transfer of a hydride to the accepting carbonyl group. The transfer of alkyl groups enabling the formation of C—C bonds during the ester formation would be of significant interest. Reported herein is such asymmetric carbonyl carboacylation of aldehydes and ketones, thus affording complex bicyclic lactones in excellent enantioselec-tivities. The rhodium(I)-catalyzed transformation is induced by an enantiotopic C~C bond activation of a cyclobutanone and the formed rhodacyclic intermediate reacts with aldehyde or ketone groups to give highly functionalized lactones.
机译:内酯基序在天然产物和药物中普遍存在。季申科歧化两个醛的羰基加氢酰化反应是一种高效且原子经济的内酯途径。然而,这些反应类型限于氢化物向可接受的羰基的转移。在酯形成期间能够形成CC键的烷基的转移将是令人关注的。本文报道了醛和酮的这种不对称羰基碳酰化作用,因此以优异的对映体活性提供了复杂的双环内酯。铑(I)催化的转化是由环丁酮的对映体C〜C键活化引起的,并且形成的Rhodacyclic中间体与醛或酮基反应生成高度官能化的内酯。

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