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CO 体相电氧化中 Pt 纳米粒子在垂直排列碳纳米纤维上的传质效应。

Mass transport effects in CO bulk electrooxidation on Pt nanoparticles supported on vertically aligned carbon nanofilaments.

机构信息

Laboratoire des Matériaux, Surfaces et Procédés pour la Catalyse, Ecole de Chimie, Polymères et Matériaux, Université de Strasbourg, UMR 7515 du CNRS-UDS, 67087, Strasbourg, France.

出版信息

Phys Chem Chem Phys. 2010 Dec 14;12(46):15207-16. doi: 10.1039/c0cp00593b. Epub 2010 Sep 8.

Abstract

In this work we report on the influence of the catalytic layer architecture on the autocatalytic reaction of CO-bulk oxidation in liquid electrolyte by employing two types of nanomaterials: 2D arrays of Pt particles prepared on the surface of glassy carbon by colloidal lithography and 3D arrays of Pt nanoparticles supported on vertically aligned carbon nanofilaments. Oxidation of dissolved CO is studied experimentally using RDE approach and computationally using finite element method. For the first time, the influence of 3D architecture of the electrode on a complex bistable electrochemical system was investigated. The modelling results are in qualitative agreement with the experiment and explain the influence of nanostructure of the electrodes on such key characteristics of CO electrooxidation as the ignition potential, the width and the shape of the bistability region, and the value of the limiting current. Analysis of the experimental RDE curves suggests spontaneous formation of active and passive reaction zones along the fibre length which is supported by modelling.

摘要

在这项工作中,我们报告了催化层结构对通过使用两种纳米材料在液体电解质中 CO 体相氧化的自催化反应的影响:通过胶体光刻在玻璃碳表面制备的 2D Pt 颗粒阵列和垂直排列的碳纳米纤维上负载的 3D Pt 纳米颗粒阵列。使用旋转圆盘电极(RDE)方法进行实验研究和使用有限元方法进行计算研究来研究溶解 CO 的氧化。首次研究了电极的 3D 结构对复杂双稳电化学体系的影响。建模结果与实验定性一致,并解释了电极的纳米结构对 CO 电氧化的关键特性(如点火电势、双稳区的宽度和形状以及极限电流值)的影响。对实验 RDE 曲线的分析表明,活性和钝化反应区沿着纤维长度自发形成,这得到了建模的支持。

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