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弱酸制氢:二铁氢化酶模拟物的电化学与计算研究

Hydrogen generation from weak acids: electrochemical and computational studies of a diiron hydrogenase mimic.

作者信息

Felton Greg A N, Vannucci Aaron K, Chen Jinzhu, Lockett L Tori, Okumura Noriko, Petro Benjamin J, Zakai Uzma I, Evans Dennis H, Glass Richard S, Lichtenberger Dennis L

机构信息

Department of Chemistry, The University of Arizona, Tucson, Arizona 85721, USA.

出版信息

J Am Chem Soc. 2007 Oct 17;129(41):12521-30. doi: 10.1021/ja073886g. Epub 2007 Sep 26.

Abstract

Extended investigation of electrocatalytic generation of dihydrogen using [(mu-1,2-benzenedithiolato)][Fe(CO)3]2 has revealed that weak acids, such as acetic acid, can be used. The catalytic reduction producing dihydrogen occurs at approximately -2 V for several carboxylic acids and phenols resulting in overpotentials of only -0.44 to -0.71 V depending on the weak acid used. This unusual catalytic reduction occurs at a potential at which the starting material, in the absence of a proton source, does not show a reduction peak. The mechanism for this process and structures for the intermediates have been discerned by electrochemical and computational analysis. These studies reveal that the catalyst is the monoanion of the starting material and an ECEC mechanism occurs.

摘要

使用[(μ-1,2-苯二硫醇基)][Fe(CO)₃]₂对电催化生成二氢进行的深入研究表明,可以使用弱酸,如乙酸。对于几种羧酸和酚类,催化还原生成二氢的过程大约在-2 V发生,根据所使用的弱酸不同,过电位仅为-0.44至-0.71 V。这种不寻常的催化还原发生在一个电位下,在没有质子源的情况下,起始原料在此电位下不会出现还原峰。通过电化学和计算分析已经确定了该过程的机理和中间体的结构。这些研究表明,催化剂是起始原料的单阴离子,并且发生ECEC机理。

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