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钠分散体介导的叔酰胺还原及还原氘代反应:质子供体依赖性化学选择性各异

Reduction and Reductive Deuteration of Tertiary Amides Mediated by Sodium Dispersions with Distinct Proton Donor-Dependent Chemoselectivity.

作者信息

Zhang Bin, Li Hengzhao, Ding Yuxuan, Yan Yuhao, An Jie

机构信息

College of Science , China Agricultural University , No. 2 Yuanmingyuan West Road , Beijing 100193 , China.

出版信息

J Org Chem. 2018 Jun 1;83(11):6006-6014. doi: 10.1021/acs.joc.8b00617. Epub 2018 May 21.

Abstract

A practical and scalable single electron transfer reduction mediated by sodium dispersions has been developed for the reduction and reductive deuteration of tertiary amides. The chemoselectivity of this method highly depends on the nature of the proton donor. The challenging reduction via C-N bond cleavage has been achieved using Na/EtOH, affording alcohol products, while the use of Na/NaOH/HO leads to the formation of amines via selective C-O scission. Sodium dispersions with high specific surface areas are crucial to obtain high yields and good chemoselectivity. This new method tolerates a range of tertiary amides. Moreover, the corresponding reductive deuterations mediated by Na/EtOD- d and Na/NaOH/DO afford useful α,α-dideuterio alcohols and α,α-dideuterio amines with an excellent deuterium content.

摘要

已开发出一种由钠分散体介导的实用且可扩展的单电子转移还原方法,用于叔酰胺的还原和还原氘代。该方法的化学选择性高度依赖于质子供体的性质。使用Na/EtOH通过具有挑战性的C-N键裂解实现了还原反应,得到醇产物,而使用Na/NaOH/H₂O则通过选择性C-O断裂生成胺。具有高比表面积的钠分散体对于获得高产率和良好的化学选择性至关重要。这种新方法适用于一系列叔酰胺。此外,由Na/EtOD-d和Na/NaOH/D₂O介导的相应还原氘代反应可得到具有优异氘含量的有用的α,α-二氘代醇和α,α-二氘代胺。

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