College of Chemical Engineering and Pharmacy , Jingchu University of Technology , Jingmen 448000 , China.
Department of Sciences, John Jay College and Ph.D. Program in Chemistry , The Graduate Center of the City University of New York , New York , New York 10019 , United States.
J Org Chem. 2019 May 17;84(10):5987-5996. doi: 10.1021/acs.joc.9b00550. Epub 2019 May 2.
Catalytic hydroboration of alkenes is a well-established method to access borane-functionalized hydrocarbons. While linear-selective hydroboration was predominantly reported, catalysts enabling opposite selectivity (branched-selective) are attracting considerable interest, especially when Earth-abundant metals are utilized. This Synopsis summarizes recent progress in Earth-abundant-metal-catalyzed, branched-selective hydroboration of alkenes while overviewing the historical contributions to this reaction using precious metals. Lessons learned from the current state of this topic that can guide future catalyst design are presented, along with challenging issues that remain to be addressed.
烯烃的催化氢硼化是一种将硼烷官能化烃类化合物的成熟方法。虽然主要报道了线性选择性氢硼化,但对于能够实现相反选择性(支化选择性)的催化剂的兴趣也在不断增加,尤其是在使用丰富的地球金属时。这篇综述总结了近年来使用丰富的地球金属催化烯烃的支化选择性氢硼化方面的进展,同时综述了使用贵金属对此反应的历史贡献。介绍了从该主题的现状中获得的可以指导未来催化剂设计的经验教训,以及仍然需要解决的具有挑战性的问题。