化学
催化作用
钯
磷化氢
还原消去
配体(生物化学)
氧化加成
组合化学
催化循环
选择性
离解(化学)
有机化学
生物化学
受体
作者
Ian C. Chagunda,Antonia Kropp,David C. Leitch,J. Scott McIndoe
出处
期刊:Organometallics
[American Chemical Society]
日期:2025-01-06
卷期号:44 (5): 628-636
被引量:7
标识
DOI:10.1021/acs.organomet.4c00463
摘要
Palladium-catalyzed cross-coupling reactions are indispensable in chemical synthesis, but efficient in situ catalyst activation remains a persistent challenge. Current Pd(II) precatalysts often lead to inefficient catalyst activation, necessitating higher catalyst loadings and limiting selectivity. We investigated the ligand substitution and activation mechanism of the stable Pd(II) dialkyl complex ( DMP DAB)Pd(CH 2 SiMe 3 ) 2 in real-time using mass spectrometric monitoring. The introduction of charge-tagged phosphine ligands enabled the detection of key catalytic intermediates and identification of off-cycle species. Our findings demonstrate a low activation energy for the ligand dissociation of the DMP DAB ligand and the reductive elimination of (Me 3 SiCH 2 ) 2 resulting in rapid formation of monoligated LPd(0) species, the active catalytic species for oxidative addition. These mechanistic insights offer a path toward developing more efficient and selective Pd-catalyzed processes, offering valuable guidance for the future design of precatalysts with improved performance.
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