化学
催化作用
超分子化学
堆积
激进的
苯甲腈
异构化
光化学
芳基
基质(水族馆)
组合化学
溶剂
卤键
氢键
立体化学
有机化学
分子
烷基
海洋学
地质学
作者
Yuanfan Wang,Jie Chen,Jie Yang,Zhiwei Jiao,Cheng‐Yong Su
标识
DOI:10.1002/anie.202303288
摘要
Abstract A visible light photosensitizing metal‐organic cage is applied as an artificial supramolecular reactor to control the reaction of aryl radicals with terminal olefins under green light/solvent conditions, which facilitates selective transformation in the confined enzyme‐mimicking environment to give a series of geometrically defined E / Z ‐alkenes. The hydrophobic cage displays good host–guest inclusion with aromatic substrates, promoting Meerwein arylation and protecting E ‐isomeric products during reaction; while a small amount of benzonitrile can turn on efficient E → Z isomerization. Besides π–π stacking, the hydrogen bonding and halogen bonding interactions also act as control forces for the arylation of aliphatic terminal olefins known as poor acceptors in classic Meerwein arylation. The application of this switchable cage‐confined arylation catalysis has been demonstrated by the syntheses of Tapinarof and a marine natural product from the same substrate via controllable E / Z selectivity.
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