化学
氢甲酰化
铑
脱质子化
配体(生物化学)
催化作用
药物化学
烯烃纤维
螯合作用
亚胺
有机化学
离子
生物化学
受体
作者
Xiao‐Chao Chen,Tian Lan,Kai‐Chun Zhao,Lin Guo,Yong Lu,Ye Liu
标识
DOI:10.1016/j.jcat.2022.05.010
摘要
Tandem hydroaminomethylation (HAM) represents one of the most important catalytic protocols for the one-pot synthesis of amines using low-cost and widely available olefins, syngas and amines as starting materials. In this work, the applied P,O-hybrid ligand containing phosphino-fragment and carboxylic group [L1, 2-(diphenylphosphino)benzoic acid] could stoichiometrically react with Rh(acac)(CO)2 to afford a stable Rh-complex of Z [dicarbonyl-2-(diphenylphosphino)benzoato rhodium(I)], wherein the more substantial P,O-chelation derived from L1 as a bidental pincer upon deprotonation as well as the thermodynamically favored six-membered ring structure warranted its stability. It was found that Z could serve as a highly active catalyst to accelerate the reaction rate of each individual step in the HAM, advantageous with the completely inhibited side-reaction of olefin-hydrogenation. The in situ high-pressure FT-IR spectral analysis demonstrated, for the first time, that the involvement of L1 greatly facilitated the formation of two kinds of the active Rh-H intermediates (A′ and A, v 2012 and 2043 cm−1) with well-maintained longevity. And the DFT calculations further confirmed that the Rh-complex of Z exhibited exclusive ability to activate H2, resulting in the efficient formation of Rh-H intermediates of A′ and A, the later (A) was responsible for rapid olefin-hydroformylation, and the former (A′) was in charge of imine-hydrogenation.
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