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锰(I)烷基-PCP钳形配合物催化末端炔烃的硼氢化反应遵循两条不同途径。

Hydroboration of Terminal Alkynes Catalyzed by a Mn(I) Alkyl PCP Pincer Complex Following Two Diverging Pathways.

作者信息

Zobernig Daniel P, Stöger Berthold, Veiros Luis F, Kirchner Karl

机构信息

Institute of Applied Synthetic Chemistry, TU Wien, Getreidemarkt 9/163-AC, Wien A-1060, Austria.

X-Ray Center, TU Wien, Getreidemarkt 9/163, Wien A-1060, Austria.

出版信息

ACS Catal. 2024 Aug 5;14(16):12385-12391. doi: 10.1021/acscatal.4c03805. eCollection 2024 Aug 16.

Abstract

A stereo- and regioselective Mn(I)-catalyzed hydroboration of terminal alkynes with pinacolborane (HBPin) is described. The hydroboration reaction is highly -selective in the case of aryl alkynes and -selective in the case of aliphatic alkynes. The reaction requires no additives or solvents and proceeds with a catalyst loading of 1 mol % at 50-70 °C. The most active precatalyst is the bench-stable alkyl Mn(I) complex -[Mn(PCP-Pr)(CO)(CHCHCH)]. The catalytic process is initiated by the migratory insertion of a CO ligand into the M-alkyl bond to yield an acyl intermediate. This species undergoes C-H and B-H bond cleavage of the alkyne (aromatic alkynes) and HBPin (in the case of aliphatic alkynes) forming the active Mn(I) alkynyl and boryl catalysts [Mn(PCP-Pr)(CO)(C≡CR)] and [Mn(PCP-Pr)(CO)(BPin)], respectively. A broad variety of aromatic and aliphatic alkynes was efficiently and selectively borylated. Mechanistic insights are provided based on experimental data and DFT calculations. The functionalized alkenes can be used for further applications in cross-coupling reactions.

摘要

本文描述了一种立体和区域选择性的锰(I)催化的末端炔烃与频哪醇硼烷(HBPin)的硼氢化反应。对于芳基炔烃,硼氢化反应具有高度选择性;对于脂肪族炔烃,则具有区域选择性。该反应无需添加剂或溶剂,在50 - 70°C下以1 mol%的催化剂负载量进行。最具活性的前催化剂是在实验室条件下稳定的烷基锰(I)配合物 -[Mn(PCP-Pr)(CO)(CHCHCH)]。催化过程由CO配体迁移插入M-烷基键生成酰基中间体引发。该物种分别经历炔烃(芳香族炔烃)的C-H和B-H键裂解以及HBPin(脂肪族炔烃的情况)的裂解,形成活性锰(I)炔基和硼基催化剂[Mn(PCP-Pr)(CO)(C≡CR)]和[Mn(PCP-Pr)(CO)(BPin)]。多种芳香族和脂肪族炔烃都能被高效且选择性地硼氢化。基于实验数据和密度泛函理论计算提供了机理见解。官能化烯烃可用于交叉偶联反应的进一步应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a85a/11334104/d3e5d06af266/cs4c03805_0001.jpg

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