Weber Stefan, Zobernig Daniel, Stöger Berthold, Veiros Luis F, Kirchner Karl
Institute of Applied Synthetic Chemistry, Vienna University of Technology, Getreidemarkt 9/163-AC, A-1060, Wien, Austria.
X-Ray Center, Vienna University of Technology, Getreidemarkt 9, A-1060, Wien, Austria.
Angew Chem Int Ed Engl. 2021 Nov 8;60(46):24488-24492. doi: 10.1002/anie.202110736. Epub 2021 Oct 13.
A Mn -catalyzed hydroboration of terminal alkenes and a 1,2-diboration of terminal alkynes with pinacolborane (HBPin) is described. For alkenes, anti-Markovnikov hydroboration takes place; for alkynes the reaction proceeds with excellent trans-1,2-selectivity. The most active pre-catalyst is bench-stable alkyl bisphosphine Mn complex fac-[Mn(dippe)(CO) (CH CH CH )]. The catalytic process is initiated by migratory insertion of a CO ligand into the Mn-alkyl bond to yield an acyl intermediate, which undergoes B-H bond cleavage of HBPin (for alkenes) and rapid C-H bond cleavage (for alkynes), forming the active Mn boryl and acetylide catalysts [Mn(dippe)(CO) (BPin)] and [Mn(dippe)(CO) (C≡CR)], respectively. A broad variety of aromatic and aliphatic alkenes and alkynes was efficiently and selectively borylated. Mechanistic insights are provided based on experimental data and DFT calculations revealing that an acceptorless reaction is operating involving dihydrogen release.
本文描述了一种锰催化的末端烯烃硼氢化反应以及末端炔烃与频哪醇硼烷(HBPin)的1,2-二硼化反应。对于烯烃,发生反马氏规则的硼氢化反应;对于炔烃,反应具有优异的反式-1,2-选择性。最具活性的预催化剂是在室温下稳定的烷基双膦锰配合物fac-[Mn(dippe)(CO)(CH₂CH₂CH₃)]。催化过程由CO配体迁移插入到锰-烷基键中引发,生成酰基中间体,该中间体对HBPin进行B-H键裂解(对于烯烃)并快速进行C-H键裂解(对于炔烃),分别形成活性锰硼基和乙炔基催化剂[Mn(dippe)(CO)(BPin)]和[Mn(dippe)(CO)(C≡CR)]。多种芳香族和脂肪族烯烃及炔烃都能被高效且选择性地硼化。基于实验数据和DFT计算提供了机理见解,揭示了该反应是一个涉及氢气释放的无受体反应。