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当前用于选择性氘代的电化学方法。

Current electrochemical approaches to selective deuteration.

作者信息

Norcott Philip L

机构信息

Research School of Chemistry, Australian National University, Canberra, ACT 2601, Australia.

出版信息

Chem Commun (Camb). 2022 Mar 1;58(18):2944-2953. doi: 10.1039/d2cc00344a.

Abstract

The selective deuteration of organic molecules through electrochemistry is proving to be an effective alternative to conventional H labelling strategies, which traditionally require high temperatures, high pressures of deuterium gas in hydrothermal autoclave reactors, or require reagents capable of generating highly reactive species which are then quenched by a deuterium source. Such harsh conditions or reagents can consequently lower chemo- or regioselectivity in many deuteration processes. Transition metal catalysis and more recently photocatalysis have emerged as methods to access selectively deuterated compounds under significantly more mild conditions. Now, electrochemistry, which is increasingly becoming a mainstream synthetic tool, is primed to enter this space. Accordingly, this highlight will feature a selection of electrochemical deuteration methods developed in recent years, and propose where the use of electrosynthesis could access novel reactivity in the context of deuteration.

摘要

通过电化学对有机分子进行选择性氘代,正被证明是传统氢标记策略的一种有效替代方法。传统方法通常需要高温、在水热高压釜反应器中使用高压氘气,或者需要能够产生高活性物种的试剂,然后用氘源淬灭这些物种。因此,在许多氘代过程中,这种苛刻的条件或试剂会降低化学选择性或区域选择性。过渡金属催化以及最近的光催化已成为在明显更温和的条件下获得选择性氘代化合物的方法。现在,日益成为主流合成工具的电化学,也准备进入这个领域。因此,本综述将重点介绍近年来开发的一系列电化学氘代方法,并提出在氘代背景下电合成的应用可以获得哪些新的反应活性。

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