Latha Anjima T, Swamy P Chinna Ayya
Main Group Organometallics Optoelectronic Materials and Catalysis Laboratory, Department of Chemistry, National Institute of Technology, Calicut, 673601, India.
Chemistry. 2024 Aug 19;30(46):e202401841. doi: 10.1002/chem.202401841. Epub 2024 Jul 29.
A series of air-stable cobalt(III)salen complexes Co-1 to Co-4 have been synthesized and employed in the hydrosilylation of ketones. Notably, the most intricately tailored Co-3 pre-catalyst exhibited exceptional catalytic activity under mild reaction conditions. The developed catalytic hydrosilylation protocol proceeded with an unusual ppm level (5 ppm) catalyst loading of Co-3 and achieved a maximum turnover number (TON) of 200,000. A wide variety of aromatic, aliphatic, and heterocyclic ketones encompassing both electron-donating and electron-withdrawing substituents were successfully transformed into the desired silyl ethers or secondary alcohols in moderate to excellent yields.
已合成了一系列空气稳定的钴(III)-salen配合物Co-1至Co-4,并将其用于酮的硅氢化反应。值得注意的是,最精心设计的Co-3预催化剂在温和的反应条件下表现出卓越的催化活性。所开发的催化硅氢化反应方案以异常低的ppm水平(5 ppm)的Co-3催化剂负载量进行,并实现了最高200,000的周转数(TON)。各种含有供电子和吸电子取代基的芳香族、脂肪族和杂环酮都成功地以中等至优异的产率转化为所需的硅醚或仲醇。