Department of Pure and Applied Chemistry, University of Strathclyde, 295 Cathedral Street, Glasgow, G1 1XL, UK.
Flexible Discovery Unit, GlaxoSmithKline Medicines Research Centre, Gunnels Wood Road, Stevenage, SG1 2NY, UK.
Angew Chem Int Ed Engl. 2017 Oct 23;56(44):13747-13751. doi: 10.1002/anie.201707914. Epub 2017 Oct 2.
Recent studies by Stoltz, Grubbs et al. have shown that triethylsilane and potassium tert-butoxide react to form a highly attractive and versatile system that shows (reversible) silylation of arenes and heteroarenes as well as reductive cleavage of C-O bonds in aryl ethers and C-S bonds in aryl thioethers. Their extensive mechanistic studies indicate a complex network of reactions with a number of possible intermediates and mechanisms, but their reactions likely feature silyl radicals undergoing addition reactions and S 2 reactions. This paper focuses on the same system, but through computational and experimental studies, reports complementary facets of its chemistry based on a) single-electron transfer (SET), and b) hydride delivery reactions to arenes.
最近,Stoltz、Grubbs 等人的研究表明,三乙硅烷和叔丁醇钾反应形成了一个极具吸引力和多功能的体系,该体系显示出(可还原的)芳基和杂芳基的硅烷化以及芳基醚中的 C-O 键和芳基硫醚中的 C-S 键的还原裂解。他们广泛的机理研究表明存在着一系列复杂的反应,其中可能有许多中间产物和机理,但它们的反应可能涉及硅自由基的加成反应和 S2 反应。本文关注的是相同的体系,但通过计算和实验研究,根据 a)单电子转移(SET)和 b)向芳环的氢化物转移反应,报道了其化学的补充方面。