亲核细胞
化学
表面改性
氢原子
组合化学
Atom(片上系统)
催化作用
氢
有机化学
计算机科学
群(周期表)
嵌入式系统
物理化学
作者
Isabelle Nathalie-Marie Leibler,Makeda A. Tekle‐Smith,Abigail G. Doyle
标识
DOI:10.1038/s41467-021-27165-z
摘要
Abstract Photoredox catalysis has provided many approaches to C(sp 3 )–H functionalization that enable selective oxidation and C(sp 3 )–C bond formation via the intermediacy of a carbon-centered radical. While highly enabling, functionalization of the carbon-centered radical is largely mediated by electrophilic reagents. Notably, nucleophilic reagents represent an abundant and practical reagent class, motivating the interest in developing a general C(sp 3 )–H functionalization strategy with nucleophiles. Here we describe a strategy that transforms C(sp 3 )–H bonds into carbocations via sequential hydrogen atom transfer (HAT) and oxidative radical-polar crossover. The resulting carbocation is functionalized by a variety of nucleophiles—including halides, water, alcohols, thiols, an electron-rich arene, and an azide—to effect diverse bond formations. Mechanistic studies indicate that HAT is mediated by methyl radical—a previously unexplored HAT agent with differing polarity to many of those used in photoredox catalysis—enabling new site-selectivity for late-stage C(sp 3 )–H functionalization.
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