| Literature DB >> 31273988 |
Hui-Min Liu1, Lei Jian1, Chao Li1, Chun-Chun Zhang2, Hai-Yan Fu1, Xue-Li Zheng1, Hua Chen1, Rui-Xiang Li1.
Abstract
A selective catalytic system for the dehydrogenation of primary alcohols to carboxylic acids using a facial ruthenium complex generated in situ from the [Ru(COD)Cl2]n and a hybrid N-heterocyclic carbene (NHC)-phosphine-phosphine ligand (CPP) has been first reported. The facial coordination model was unveiled by NMR analysis of the reaction mixture. Such a fac-ruthenium catalyst system exhibited high catalytic activity and stability, and a high turnover number of 20 000 could be achieved with catalyst loading as low as 0.002 mol %. The exceedingly high catalyst stability was tentatively attributed to both the anchoring role of NHC and the hemi-lability of phosphines. The catalytic system also features a wide substrate scope. In particular, the facial coordination of CPP ligands was found to be beneficial for sterically hindered alcohols, and ortho-substituted benzylic alcohols and bulky adamantanyl methanol as well as cholesterol were all found to be viable dehydrogenation substrates.Entities:
Year: 2019 PMID: 31273988 DOI: 10.1021/acs.joc.9b01100
Source DB: PubMed Journal: J Org Chem ISSN: 0022-3263 Impact factor: 4.354