Doucet Henri, Hierso Jean-Cyrille
Institut Sciences Chimiques de Rennes, UMR 6226 CNRS-Université de Rennes, Catalyse et Organometalliques, Campus de Beaulieu, 35042 Rennes, France.
Angew Chem Int Ed Engl. 2007;46(6):834-71. doi: 10.1002/anie.200602761.
Conjugated alkynes are recurring building blocks in natural products, a wide range of industrial intermediates, pharmaceuticals and agrochemicals, and molecular materials for optics and electronics. The palladium-catalyzed cross-coupling between sp(2)-hybridized carbon atoms of aryl, heteroaryl, and vinyl halides with sp-hybridized carbon atoms of terminal acetylenes is one of the most important developments in the field of alkyne chemistry over the past 50 years. The seminal work of the 1970s has initiated an intense search for more general and reliable reaction conditions. The interest in the catalytic activation of demanding substrates, the need to minimize the consumption of depletive resources, and the search for easy access to an increased variety of functionalized enynes has led to the current generations of high-turnover catalysts. This Review gives an overview of the highly efficient palladium catalyst systems for the direct alkynylation of C(sp(2)) halides with terminal alkynes, both in homogeneous and heterogeneous phases.
共轭炔烃是天然产物、多种工业中间体、药物和农用化学品以及光学和电子分子材料中反复出现的结构单元。芳基、杂芳基和乙烯基卤化物的sp(2)杂化碳原子与末端乙炔的sp杂化碳原子之间的钯催化交叉偶联是过去50年炔烃化学领域最重要的进展之一。20世纪70年代的开创性工作引发了对更通用、更可靠反应条件的深入探索。对苛刻底物的催化活化的兴趣、尽量减少消耗性资源消耗的需求以及寻求容易获得更多种类功能化烯炔的需求,催生了当前一代的高周转率催化剂。本综述概述了用于C(sp(2))卤化物与末端炔烃直接炔基化的高效钯催化剂体系,包括均相和非均相体系。