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催化转移氘代和氘氢化:将烯烃和炔烃选择性转化为氘代烷烃的新兴技术。

Catalytic Transfer Deuteration and Hydrodeuteration: Emerging Techniques to Selectively Transform Alkenes and Alkynes to Deuterated Alkanes.

机构信息

Department of Chemistry, Marquette University, Milwaukee, Wisconsin, 53233-1881, USA.

出版信息

Chemistry. 2021 Jul 12;27(39):9988-10000. doi: 10.1002/chem.202100635. Epub 2021 Jun 9.

Abstract

Increasing demand for deuterium-labeled organic molecules has spurred a renewed interest in selective methods for deuterium installation. Catalytic transfer deuteration and transfer hydrodeuteration are emerging as powerful techniques for the selective incorporation of deuterium into small molecules. These reactions not only obviate the use of D gas and pressurized reaction setups but provide new opportunities for selectively installing deuterium into small molecules. Commercial or readily synthesized deuterium donors are typically employed as easy-to-handle reagents for transfer deuteration and hydrodeuteration reactions. In this minireview, recent advances in the catalytic transfer deuteration and hydrodeuteration of alkenes and alkynes for the selective synthesis of deuterated alkanes will be discussed.

摘要

对氘标记有机分子的需求不断增加,促使人们重新关注选择性氘引入方法。催化转移氘化和转移加氢氘化作为将氘选择性引入小分子的强大技术正在出现。这些反应不仅避免了使用 D 气和加压反应装置,而且为小分子中选择性引入氘提供了新的机会。商业或易于合成的氘供体通常用作易于处理的试剂,用于转移氘化和加氢氘化反应。在这篇综述中,将讨论烯烃和炔烃的催化转移氘化和加氢氘化在选择性合成氘代烷烃方面的最新进展。

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