氢甲酰化
钴
催化作用
铑
磷化氢
化学
催化循环
分解
阳离子聚合
螯合作用
有机化学
作者
Drew M. Hood,Ryan A. Johnson,Alex E. Carpenter,Jarod M. Younker,David J. Vinyard,George G. Stanley
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2020-01-31
卷期号:367 (6477): 542-548
被引量:197
标识
DOI:10.1126/science.aaw7742
摘要
The cobalt complexes HCo(CO)4 and HCo(CO)3(PR3) were the original industrial catalysts used for the hydroformylation of alkenes through reaction with hydrogen and carbon monoxide to produce aldehydes. More recent and expensive rhodium-phosphine catalysts are hundreds of times more active and operate under considerably lower pressures. Cationic cobalt(II) bisphosphine hydrido-carbonyl catalysts that are far more active than traditional neutral cobalt(I) catalysts and approach rhodium catalysts in activity are reported here. These catalysts have low linear-to-branched (L:B) regioselectivity for simple linear alkenes. However, owing to their high alkene isomerization activity and increased steric effects due to the bisphosphine ligand, they have high L:B selectivities for internal alkenes with alkyl branches. These catalysts exhibit long lifetimes and substantial resistance to degradation reactions.
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