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钯膜反应器高效电催化氢化。

Efficient Electrocatalytic Hydrogenation with a Palladium Membrane Reactor.

机构信息

Department of Chemistry , The University of British Columbia , 2036 Main Mall , Vancouver , British Columbia V6T 1Z1 , Canada.

Department of Chemical and Biological Engineering , The University of British Columbia , 2360 East Mall , Vancouver , British Columbia V6Y 1Z3 , Canada.

出版信息

J Am Chem Soc. 2019 May 15;141(19):7815-7821. doi: 10.1021/jacs.9b01442. Epub 2019 May 1.

Abstract

We report here the benefits of using a palladium membrane reactor to drive hydrogenation chemistry with electricity while bypassing the formation of gaseous H. This technique uses a palladium membrane to physically separate the electrochemical and hydrogenation chemistry. As a result, hydrogenation can be performed electrochemically with protons but in any organic solvent. In this article, we outline a series of experiments showing how hydrogenation in the palladium membrane reactor proceeds at faster reaction rates and with much higher voltage efficiency than hydrogenation at an electrode. Moreover, the organic reaction chemistry in the membrane reactor can be performed in organic solvents and without contamination by electrolytes. The physical separation of the hydrogenation compartment from the electrolysis compartment therefore broadens the scope of electrolytically-driven reactions that are available, and simplifies reagent handling and purification.

摘要

我们在这里报告了使用钯膜反应器通过绕过气态 H 的形成来利用电力驱动氢化反应的好处。该技术使用钯膜将电化学和氢化化学物理分离。结果,氢化可以在质子但在任何有机溶剂中电化学进行。在本文中,我们概述了一系列实验,展示了钯膜反应器中的氢化如何以比电极氢化更快的反应速率和更高的电压效率进行。此外,膜反应器中的有机反应化学可以在有机溶剂中进行,并且不会受到电解质的污染。因此,氢化隔室与电解隔室的物理分离拓宽了可用的电驱动反应的范围,并简化了试剂的处理和纯化。

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