钌
化学
芳基
氢化物
异构化
药物化学
三乙胺
配体(生物化学)
转移加氢
催化作用
立体化学
光化学
金属
烷基
有机化学
生物化学
受体
作者
Samaresh Bhattacharya,Aparajita Mukherjee,Jayita Dutta
标识
DOI:10.1002/asia.202401695
摘要
A group of four N‐(4‐R‐phenyl)salicylaldimines (abbreviated in general as L1‐R) were found to undergo activation of the phenolic O‐H bond upon their reaction with [Ru(PPh3)2(CO)2Cl2] in refluxing toluene in the presence of triethylamine to afford hydrido complexes of type [Ru(PPh3)2(CO)(NO‐R)(H)], 1‐R, where NO‐R depicts the anionic N,O‐donor ligand derived from L1‐R. This reaction was realized to proceed via the intermediacy of an in situ generated ruthenium(0) species of type [Ru(PPh3)2(CO)2]. Formation of 1‐R goes via isomerization of an initially formed species 1‐Rʹ with mutual change of disposition of CO and hydride. Utilizing the appropriate orientation of the Ru‐bound hydride in the initial product (1‐Rʹ), cycloruthenated complexes [Ru(PPh3)2(CO)(CNO2)], 2, and [Ru(PPh3)2(CO)(CNO3)], 3, were synthesized by using N‐(naphthyl)salicylaldimine (L2) and N‐(pyrenyl)salicylaldimine (L3), where CNO2 and CNO3 depict the dianionic CN,O‐donor ligands derived from L2 and L3 respectively. Crystal structures of the 1‐OCH3, 1‐Cl, 2 and 3 complexes have been determined. Formation mechanism of the complexes has also been proposed. All the complexes show intense absorptions in the visible and ultraviolet regions, which have been analyzed by TDDFT calculations. The 1‐R complexes are found to efficiently catalyze transfer hydrogenation of aldehydes, ketones to the corresponding alcohols, and alkynes to the corresponding alkenes.
科研通智能强力驱动
Strongly Powered by AbleSci AI