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金纳米粒子在 HOPG 和高掺硼金刚石表面上的尺寸依赖性电催化活性。

Size-dependent electrocatalytic activity of gold nanoparticles on HOPG and highly boron-doped diamond surfaces.

机构信息

Department of Physics E19, Technische Universität München, James-Franck-Str. 1, 85748 Garching, Germany.

出版信息

Molecules. 2011 Dec 6;16(12):10059-77. doi: 10.3390/molecules161210059.

Abstract

Gold nanoparticles were prepared by electrochemical deposition on highly oriented pyrolytic graphite (HOPG) and boron-doped, epitaxial 100-oriented diamond layers. Using a potentiostatic double pulse technique, the average particle size was varied in the range from 5 nm to 30 nm in the case of HOPG as a support and between < 1 nm and 15 nm on diamond surfaces, while keeping the particle density constant. The distribution of particle sizes was very narrow, with standard deviations of around 20% on HOPG and around 30% on diamond. The electrocatalytic activity towards hydrogen evolution and oxygen reduction of these carbon supported gold nanoparticles in dependence of the particle sizes was investigated using cyclic voltammetry. For oxygen reduction the current density normalized to the gold surface (specific current density) increased for decreasing particle size. In contrast, the specific current density of hydrogen evolution showed no dependence on particle size. For both reactions, no effect of the different carbon supports on electrocatalytic activity was observed.

摘要

金纳米粒子通过电化学沉积在高定向热解石墨(HOPG)和掺硼的外延 100 取向金刚石层上制备。使用恒电位双脉冲技术,在 HOPG 作为支撑的情况下,平均粒径在 5nm 至 30nm 范围内变化,而在金刚石表面上的粒径则在 <1nm 至 15nm 范围内变化,同时保持颗粒密度不变。粒径分布非常狭窄,在 HOPG 上的标准偏差约为 20%,在金刚石上的标准偏差约为 30%。使用循环伏安法研究了这些碳负载金纳米粒子的电化学析氢和氧还原的电催化活性与粒径的关系。对于氧还原,归一化到金表面的电流密度(比电流密度)随粒径的减小而增加。相比之下,析氢的比电流密度与粒径无关。对于这两种反应,都没有观察到不同碳载体对电催化活性的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c416/6264566/3d7d30007b25/molecules-16-10059-g001.jpg

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