化学
光催化
糖基化
光催化
光化学
电子转移
催化作用
光诱导电子转移
反应中间体
可见光谱
氧化还原
组合化学
纳米技术
有机化学
生物化学
材料科学
光电子学
作者
Zanjila Azeem,Pintu Kumar Mandal
标识
DOI:10.1002/adsc.202300425
摘要
Abstract In the last fifteen years, the development of visible‐light photocatalysis, metal/photoredox dual catalysis has become the forefront as a new paradigm in organic synthesis as well as in carbohydrate chemistry. It led to the discovery of unprecedented transformations and also the improvement of known reactions under mild conditions, employing simple household light sources and bench‐stable precursors, which meet the requirements of green chemistry and sustainable development in excellent yield and stereocontrol. In a general sense, the exploitation of photoredox catalysis hinges on the capability of photocatalyst or redox mediator to transform visible light into chemical energy via photo‐irradiated SET (single electron transfer), PET (photoinduced electron transfer), HAT (hydrogen atom transfer), and XAT (halogen atom transfer) to potentially unlock unique reaction pathways, thereby generating a diverse array of reactive intermediates. In view of reaction type, mechanism, and status, this review will systematically summarize the latest advances in visible‐light‐promoted photocatalytic glycosylation reactions, which are driven by single or dual photoredox catalysis and by the photoactivity of electron donor‐acceptor (EDA) complexes.
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