次氯酸
硼烷
化学
电泳剂
亲核细胞
卡宾
活性氧
光化学
过氧亚硝酸盐
选择性
反应中间体
有机化学
催化作用
硼
超氧化物
生物化学
酶
作者
Yen Leng Pak,Sang Jun Park,Di Wu,BoHyun Cheon,Hwan Myung Kim,Jean Bouffard,Juyoung Yoon
标识
DOI:10.1002/anie.201711188
摘要
Abstract N‐Heterocyclic carbene (NHC) boranes undergo oxidative hydrolysis to give imidazolium salts with excellent kinetic selectivity for HOCl over other reactive oxygen species (ROS), including peroxides and peroxynitrite. Selectivity for HOCl results from the electrophilic oxidation mechanism of NHC boranes, which stands in contrast to the nucleophilic oxidation mechanism of arylboronic acids with ROS. The change in polarity that accompanies the conversion of NHC boranes to imidazolium salts can control the formation of emissive excimers, forming the basis for the design of the first fluorescence probe for ROS based on the oxidation of B−H bonds. Two‐photon microscope (TPM) ratiometric imaging of HOCl in living cells and tissues is demonstrated.
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