锰
烷基化
催化作用
化学
可见光谱
组合化学
光化学
有机化学
材料科学
光电子学
作者
Philippe Nuhant,Martins S. Oderinde,Julien Genovino,Antoine Juneau,Yohann Gagné,Christophe Allais,Gary M. Chinigo,Chulho Choi,Neal W. Sach,Louise Bernier,Yvette M. Fobian,Mark W. Bundesmann,Bhagyashree Khunte,Mathieu Frenette,Olugbeminiyi Fadeyi
标识
DOI:10.1002/anie.201707958
摘要
A visible-light-driven Minisci protocol that employs an inexpensive earth-abundant metal catalyst, decacarbonyldimanganese Mn2 (CO)10 , to generate alkyl radicals from alkyl iodides has been developed. This Minisci protocol is compatible with a wide array of sensitive functional groups, including oxetanes, sugar moieties, azetidines, tert-butyl carbamates (Boc-group), cyclobutanes, and spirocycles. The robustness of this protocol is demonstrated on the late-stage functionalization of complex nitrogen-containing drugs. Photophysical and DFT studies indicate a light-initiated chain reaction mechanism propagated by . Mn(CO)5 . The rate-limiting step is the iodine abstraction from an alkyl iodide by . Mn(CO)5 .
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