| Literature DB >> 30238593 |
Weijia Zheng1, Johnny W Lee1, Cristian A Morales-Rivera2, Peng Liu2, Ming-Yu Ngai1.
Abstract
The trifluoromethoxy (OCF3 ) radical is of great importance in organic chemistry. Yet, the catalytic and selective generation of this radical at room temperature and pressure remains a longstanding challenge. Herein, the design and development of a redox-active cationic reagent (1) that enables the formation of the OCF3 radical in a controllable, selective, and catalytic fashion under visible-light photocatalytic conditions is reported. More importantly, the reagent allows catalytic, intermolecular C-H trifluoromethoxylation of a broad array of (hetero)arenes and biorelevant compounds. Experimental and computational studies suggest single electron transfer (SET) from excited photoredox catalysts to 1 resulting in exclusive liberation of the OCF3 radical. Addition of this radical to (hetero)arenes gives trifluoromethoxylated cyclohexadienyl radicals that are oxidized and deprotonated to afford the products of trifluoromethoxylation.Entities:
Keywords: arenes; photocatalysis; radicals; trifluoromethoxylating reagents; trifluoromethoxylation
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Year: 2018 PMID: 30238593 PMCID: PMC6278930 DOI: 10.1002/anie.201808495
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336