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Pt-Sn/γ-Al2O3 催化的高效直接合成仲胺和叔胺及亚胺。

Pt-Sn/γ-Al2O3-catalyzed highly efficient direct synthesis of secondary and tertiary amines and imines.

机构信息

Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian 116023, PR China.

出版信息

Chemistry. 2011 Nov 18;17(47):13308-17. doi: 10.1002/chem.201101725. Epub 2011 Oct 13.

Abstract

Versatile syntheses of secondary and tertiary amines by highly efficient direct N-alkylation of primary and secondary amines with alcohols or by deaminative self-coupling of primary amines have been successfully realized by means of a heterogeneous bimetallic Pt-Sn/γ-Al(2)O(3) catalyst (0.5 wt % Pt, Pt/Sn molar ratio=1:3) through a borrowing-hydrogen strategy. In the presence of oxygen, imines were also efficiently prepared from the tandem reactions of amines with alcohols or between two primary amines. The proposed mechanism reveals that an alcohol or amine substrate is initially dehydrogenated to an aldehyde/ketone or NH-imine with concomitant formation of a [PtSn] hydride. Condensation of the aldehyde/ketone species or deamination of the NH-imine intermediate with another molecule of amine forms an N-substituted imine which is then reduced to a new amine product by the in-situ generated [PtSn] hydride under a nitrogen atmosphere or remains unchanged as the final product under an oxygen atmosphere. The Pt-Sn/γ-Al(2)O(3) catalyst can be easily recycled without Pt metal leaching and has exhibited very high catalytic activity toward a wide range of amine and alcohol substrates, which suggests potential for application in the direct production of secondary and tertiary amines and N-substituted imines.

摘要

通过一种非均相双金属 Pt-Sn/γ-Al2O3 催化剂(0.5wt%Pt,Pt/Sn 摩尔比=1:3),借助借氢策略,成功地实现了伯胺和仲胺与醇的高效直接 N-烷基化反应,以及伯胺的脱氨自偶联反应,从而实现了仲胺和叔胺的多功能合成。在氧气存在的情况下,通过胺与醇的串联反应或两个伯胺之间的反应,也可以有效地制备亚胺。所提出的机理表明,醇或胺底物最初被脱氢形成醛/酮或 NH-亚胺,同时形成[PtSn]氢化物。醛/酮物种的缩合或 NH-亚胺中间体与另一个胺分子的脱氨作用形成 N-取代亚胺,然后在氮气气氛下由原位生成的[PtSn]氢化物将其还原为新的胺产物,或在氧气气氛下保持不变作为最终产物。Pt-Sn/γ-Al2O3 催化剂可以在没有 Pt 金属浸出的情况下很容易地回收利用,并且对广泛的胺和醇底物表现出非常高的催化活性,这表明它在直接生产仲胺和叔胺以及 N-取代亚胺方面具有应用潜力。

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