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从配体促进的钌催化伯胺脱氨基偶联反应中合成对称和不对称仲胺。

Synthesis of Symmetric and Unsymmetric Secondary Amines from the Ligand-Promoted Ruthenium-Catalyzed Deaminative Coupling Reaction of Primary Amines.

机构信息

Department of Chemistry , Marquette University , Milwaukee , Wisconsin 53201-1881 , United States.

出版信息

J Org Chem. 2018 May 4;83(9):4932-4947. doi: 10.1021/acs.joc.8b00649. Epub 2018 Apr 24.

DOI:10.1021/acs.joc.8b00649
PMID:29665681
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5998338/
Abstract

The catalytic system generated in situ from the tetranuclear Ru-H complex with a catechol ligand (1/L1) was found to be effective for the direct deaminative coupling of two primary amines to form secondary amines. The catalyst 1/L1 was highly chemoselective for promoting the coupling of two different primary amines to afford unsymmetric secondary amines. The analogous coupling of aniline with primary amines formed aryl-substituted secondary amines. The treatment of aniline- d with 4-methoxybenzylamine led to the coupling product with significant deuterium incorporation on CH (18% D). The most pronounced carbon isotope effect was observed on the α-carbon of the product isolated from the coupling reaction of 4-methoxybenzylamine (C(1) = 1.015(2)). A Hammett plot was constructed from measuring the rates of the coupling reaction of 4-methoxyaniline with a series of para-substituted benzylamines 4-X-CHCHNH (X = OMe, Me, H, F, CF) (ρ = -0.79 ± 0.1). A plausible mechanistic scheme has been proposed for the coupling reaction on the basis of these results. The catalytic coupling method provides an operationally simple and chemoselective synthesis of secondary amine products without using any reactive reagents or forming wasteful byproducts.

摘要

用具有邻苯二酚配体的四核 Ru-H 配合物(1/L1)原位生成的催化体系被发现可有效地将两个伯胺直接脱氨偶联形成仲胺。催化剂 1/L1 对促进两个不同伯胺的偶联以形成不对称仲胺具有高度的化学选择性。苯胺与伯胺的类似偶联形成芳基取代的仲胺。用苯胺- d 处理 4-甲氧基苄胺导致具有显著氘掺入的偶联产物在 CH 上(18% D)。在 4-甲氧基苄胺偶联反应中从产物中分离出的α-碳上观察到最显著的碳同位素效应(C(1) = 1.015(2))。从 4-甲氧基苯胺与一系列对位取代的苄基胺 4-X-CHCHNH(X = OMe、Me、H、F、CF)的偶联反应速率测量构建了哈米特图(ρ = -0.79 ± 0.1)。根据这些结果,提出了一种可能的偶联反应机理方案。该催化偶联方法提供了一种操作简单、化学选择性的仲胺产物合成方法,无需使用任何反应试剂或形成浪费的副产物。

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