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射频磁控溅射法制备用于电催化应用的金纳米粒子修饰 ITO 电极。

RF-sputtering preparation of gold-nanoparticle-modified ITO electrodes for electrocatalytic applications.

机构信息

Dipartimento di Chimica Fisica ed Inorganica, Università di Bologna, Viale Risorgimento 4, I-40136 Bologna, Italy.

出版信息

Nanotechnology. 2011 Jul 8;22(27):275711. doi: 10.1088/0957-4484/22/27/275711. Epub 2011 May 24.

DOI:10.1088/0957-4484/22/27/275711
PMID:21606565
Abstract

The preparation of gold-nanoparticle (AuNPs)-modified indium tin oxide (ITO) electrodes (AuNPs/ITO) was performed by radio-frequency (RF) sputtering from Ar plasmas at temperatures as low as 60 °C, tailoring the AuNP morphology and content as a function of the sole sputtering time. The latter parameter was varied from 5 to 20 min in order to investigate the influence of gold amount and distribution on the electrochemical performances of the resulting AuNPs/ITO systems. The electrodes were characterized using field emission-scanning electron microscopy (FE-SEM), UV-vis absorption and x-ray photoelectron spectroscopies (XPS); moreover variable scan rate cyclic voltammetry (CV) studies were performed to examine their electrochemical behavior. The electrocatalytic activity of the nanostructured AuNPs/ITO electrodes toward methanol oxidation was investigated and compared with a continuous gold film (Aufilm/ITO). The catalytic efficiency of the AuNPs/ITO systems was found to increase with the gold content and the AuNPs-support boundary region in the corresponding samples. For the longest sputtering time (i.e. 20 min) the performances of the nanostructured electrode were better than the Aufilm/ITO reference, despite the much lower catalyst amount. Furthermore, conversely from the AuNPs/ITO samples, in the Au(film)/ITO case the gold film displayed a poor adhesion to the substrate and the electrode could be used only for a limited number of electrochemical cycles.

摘要

金纳米粒子(AuNPs)修饰的氧化铟锡(ITO)电极(AuNPs/ITO)的制备是通过在 60°C 以下的 Ar 等离子体中进行射频(RF)溅射来完成的,通过单独的溅射时间来调整 AuNP 的形态和含量。为了研究金的数量和分布对所得 AuNPs/ITO 系统电化学性能的影响,后者的参数从 5 分钟变化到 20 分钟。使用场发射扫描电子显微镜(FE-SEM)、紫外可见吸收和 X 射线光电子能谱(XPS)对电极进行了表征;此外,还进行了可变扫描速率循环伏安法(CV)研究以检查其电化学行为。研究了纳米结构的 AuNPs/ITO 电极对甲醇氧化的电催化活性,并与连续金膜(Aufilm/ITO)进行了比较。发现 AuNPs/ITO 系统的催化效率随着金含量和相应样品中 AuNPs-载体边界区域的增加而增加。对于最长的溅射时间(即 20 分钟),尽管催化剂的量低得多,但纳米结构电极的性能优于 Aufilm/ITO 参考。此外,与 AuNPs/ITO 样品相反,在 Au(film)/ITO 情况下,金膜与基底的附着力差,电极只能使用有限数量的电化学循环。

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