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Electron-Transfer and Hydride-Transfer Pathways in the Stoltz-Grubbs Reducing System (KOtBu/Et3 SiH).


ABSTRACT: 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 SH 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.

SUBMITTER: Smith AJ 

PROVIDER: S-EPMC5656899 | biostudies-other | 2017 Oct

REPOSITORIES: biostudies-other

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Electron-Transfer and Hydride-Transfer Pathways in the Stoltz-Grubbs Reducing System (KOtBu/Et<sub>3</sub> SiH).

Smith Andrew J AJ   Young Allan A   Rohrbach Simon S   O'Connor Erin F EF   Allison Mark M   Wang Hong-Shuang HS   Poole Darren L DL   Tuttle Tell T   Murphy John A JA  

Angewandte Chemie (International ed. in English) 20171002 44


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  ...[more]

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