Manganese-Catalyzed Hydroboration of Terminal Olefins and Metal-Dependent Selectivity in Internal Olefin Isomerization–Hydroboration
硼氢化
化学
异构化
烯烃
选择性
烯烃纤维
钴
锰
硅氢加成
催化作用
均相催化
有机化学
作者
Subhash Garhwal,Asja A. Kroeger,Ranjeesh Thenarukandiyil,Natalia Fridman,Amir Karton,Graham de Ruiter
出处
期刊:Inorganic Chemistry [American Chemical Society] 日期:2020-12-16卷期号:60 (1): 494-504被引量:23
标识
DOI:10.1021/acs.inorgchem.0c03451
摘要
In the past decade, the use of earth-abundant metals in homogeneous catalysis has flourished. In particular, metals such as cobalt and iron have been used extensively in reductive transformations including hydrogenation, hydroboration, and hydrosilylation. Manganese, on the other hand, has been considerably less explored in these reductive transformations. Here, we report a well-defined manganese complex, [Mn(iPrBDI)(OTf)2] (2a; BDI = bipyridinediimine), that is an active precatalyst in the hydroboration of a variety of electronically differentiated alkenes (>20 examples). The hydroboration is specifically selective for terminal alkenes and occurs with exclusive anti-Markovnikov selectivity. In contrast, when using the analogous cobalt complex [Co(iPrBDI)(OTf)2] (3a), internal alkenes are hydroborated efficiently, where a sequence of isomerization steps ultimately leads to their hydroboration. The contrasting terminal versus internal alkene selectivity for manganese and cobalt was investigated computationally and is further discussed in the herein-reported study.