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一种用于胺与醇一锅法选择性 N-单烷化的双功能 Pd/MgO 固体催化剂。

A bifunctional Pd/MgO solid catalyst for the one-pot selective N-monoalkylation of amines with alcohols.

机构信息

Instituto de Tecnología Química UPV-CSIC, Avda. Los Naranjos s/n, 46022 Valencia, Spain.

出版信息

Chemistry. 2010 Jan 4;16(1):254-60. doi: 10.1002/chem.200901501.

Abstract

It has been found that a bifunctional metal Pd/base (MgO) catalyst performs the selective monoalkylation of amines with alcohols. The reaction goes through a series of consecutive steps in a cascade mode that involves: 1) the abstraction of hydrogen from the alcohol that produces the metal hydride and the carbonyl compound; 2) condensation of the carbonyl with the amine to give an imine, and 3) hydrogenation of the imine with the surface hydrogen atoms from the metal hydride. Based on isotopic and spectroscopic studies and on the rate of each elementary step, a global reaction mechanism has been proposed. The controlling step of the process is the hydride transfer from the metal to the imine. By changing the crystallite size of the Pd, it is demonstrated that this is a structure-sensitive reaction, whereas the competing processes that lead to subproducts are not. On these bases, a highly selective catalyst has been obtained with Pd crystallite size below 2.5 nm in diameter. The high efficiency of the catalytic system has allowed us to extend the process to the one-pot synthesis of piperazines.

摘要

现已发现,双功能金属 Pd/基(MgO)催化剂可实现胺与醇的选择性单烷基化反应。该反应以级联方式经过一系列连续步骤进行,涉及:1)从醇中提取氢,生成金属氢化物和羰基化合物;2)羰基与胺缩合生成亚胺,3)金属氢化物表面的氢氢化亚胺。基于同位素和光谱研究以及各基本步骤的速率,提出了一种全局反应机制。该过程的控制步骤是氢化物从金属转移到亚胺。通过改变 Pd 的微晶尺寸,证明这是一个结构敏感的反应,而导致副产物的竞争过程则不是。在此基础上,获得了具有 Pd 微晶尺寸小于 2.5nm 的高度选择性催化剂。催化体系的高效率使我们能够将该过程扩展到哌嗪的一锅合成。

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