烷基苯
化学
组合化学
有机合成
基质(水族馆)
分子
分子间力
不饱和度
试剂
有机化学
催化作用
海洋学
地质学
作者
Jianwen Jin,Yichao Zhao,Sara H. Kyne,Kaveh Farshadfar,Alireza Ariafard,Philip Wai Hong Chan
标识
DOI:10.1038/s41467-021-23988-y
摘要
Abstract Strategies that enable intermolecular site-selective C–H bond functionalisation of organic molecules provide one of the cornerstones of modern chemical synthesis. In chloroalkane synthesis, such methods for intermolecular site-selective aliphatic C–H bond chlorination have, however, remained conspicuously rare. Here, we present a copper(I)-catalysed synthetic method for the efficient site-selective C( sp 3 )–H bond chlorination of ketones, ( E )-enones and alkylbenzenes by dichloramine-T at room temperature. A key feature of the broad substrate scope is tolerance to unsaturation, which would normally pose an immense challenge in chemoselective aliphatic C–H bond functionalisation. By unlocking dichloramine-T’s potential as a chlorine radical atom source, the product site-selectivities achieved are among the most selective in alkane functionalisation and should find widespread utility in chemical synthesis. This is exemplified by the late-stage site-selective modification of a number of natural products and bioactive compounds, and gram-scale preparation and formal synthesis of two drug molecules.
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