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α-杂原子取代炔烃的自由基锗锌化反应

Radical Germylzincation of α-Heteroatom-Substituted Alkynes.

作者信息

de la Vega-Hernández Karen, Romain Elise, Coffinet Anais, Bijouard Kajetan, Gontard Geoffrey, Chemla Fabrice, Ferreira Franck, Jackowski Olivier, Perez-Luna Alejandro

机构信息

Sorbonne Université, CNRS , Institut Parisien de Chimie Moléculaire , F-75005 Paris , France.

出版信息

J Am Chem Soc. 2018 Dec 19;140(50):17632-17642. doi: 10.1021/jacs.8b09851. Epub 2018 Dec 11.

Abstract

The regio- and stereoselective addition of germanium and zinc across the C-C triple bond of nitrogen-, sulfur-, oxygen-, and phosphorus-substituted terminal and internal alkynes is achieved by reaction with a combination of RGeH and EtZn. Diagnostic experiments support a radical-chain mechanism and the β-zincated vinylgermanes that show exceptional stability are characterized by NMR spectroscopy and X-ray crystallography. The unique feature of this new radical germylzincation reaction is that the C(sp)-Zn bond formed remains available for subsequent in situ Cu(I)- or Pd(0)-mediated C-C or C-heteroatom bond formation with retention of the double bond geometry. These protocols offer modular access to elaborated tri- and tetrasubstituted vinylgermanes decorated with heteroatom substituents β to germanium that are useful for the preparation of stereodefined alkenes.

摘要

通过与RGeH和EtZn的组合反应,实现了锗和锌对氮、硫、氧和磷取代的末端和内炔烃的碳-碳三键的区域和立体选择性加成。诊断实验支持自由基链机理,通过核磁共振光谱和X射线晶体学对显示出异常稳定性的β-锌化乙烯基锗进行了表征。这种新的自由基锗基锌化反应的独特之处在于,形成的C(sp)-Zn键可用于随后原位铜(I)或钯(0)介导的碳-碳或碳-杂原子键形成,同时保留双键几何结构。这些方法提供了模块化途径,可用于制备带有锗β位杂原子取代基的精细三取代和四取代乙烯基锗,这些乙烯基锗可用于制备立体定义的烯烃。

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