催化作用
化学
双功能
溴化物
组合化学
绿色化学
基质(水族馆)
危险废物
反应机理
有机化学
废物管理
海洋学
地质学
工程类
作者
Guodong Zhao,Lixin Liang,Eryu Wang,Rongbiao Tong
出处
期刊:ACS Catalysis
[American Chemical Society]
日期:2021-03-09
卷期号:11 (6): 3740-3748
被引量:38
标识
DOI:10.1021/acscatal.1c00219
摘要
Achmatowicz rearrangement (AchR) is a very important transformation for the synthesis of various heterocyclic building blocks and natural products. Here, the discovery of Fenton chemistry for AchR using a bifunctional catalyst (FeBr2 or CeBr3), which has environmental friendliness and a broad substrate scope at the same time has been reported. This method addresses the major limitation of conventional chemical (hazardous) and enzymatic (limited scope) methods. Mechanistic studies suggested that reactive brominating species (RBS) is the true catalyst for AchR and that Fenton chemistry [Fe/Ce (cat.) + H2O2 → HO•/HOO• + H2O] is responsible for the oxidation of bromide into RBS. Importantly, this in situ RBS generation from M-Brx–H2O2 under neutral conditions addresses the long-lasting problem of many haloperoxidase mimics that require a strong acidic additive/medium for bromide oxidation with H2O2, which creates opportunities for many other brominium-mediated organic reactions.
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