Investigation on the electrocatalytic oxidation of alcohol using zinc oxide thin films deposited by pulsed electrodeposition on an indium tin oxide surface

Meriem Lakhdari, Khadidja Hadj Larbi, Abdelkader Nebatti Ech-chergui, F. Habelhames, N. Benaioun, Jean Michel Nunzi, Sanat Kumar Mukherjee, Mehdi Adjdir
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Abstract

To perform electro-catalytic oxidation of alcohols in an alkaline media, zinc oxide (ZnO) thin films were effectively deposited on indium tin oxide (ITO) substrates using the pulsed electrodeposition (PE) method in a zinc nitrate aqueous solution. Analyses of microstructural, photoelectrochemical, and optical characteristics of ZnO thin films were performed as a function of pulsed electrodeposition parameters. XRD analysis was applied to determine structural properties, and SEM and AFM analysis were used to investigate morphological characteristics. X-ray diffraction analyses revealed that the produced films were polycrystalline and had a (002) preferentially oriented, hexagonal wurtzite structure. The morphology of ZnO has improved in the direction of nanorod films, as evidenced by scanning electron microscopy (SEM) and atomic force microscopy (AFM) images. UV transmittance data was used using Tauc's relationship to determine the film's bandgap to be 3.26 eV. The photocurrent response shows that ZnO films have high values, at 305.17 A/cm2, and good optical characteristics. The electrocatalytic oxidation of methanol was finally evaluated on the films. After being optimized in the pulsed electrodeposition mode, ZnO thin film characteristics and methanol electrocatalytic oxidation both saw substantial improvements.  
利用脉冲电沉积法在氧化铟锡表面沉积氧化锌薄膜对酒精进行电催化氧化的研究
为了在碱性介质中对酒精进行电催化氧化,在硝酸锌水溶液中采用脉冲电沉积(PE)方法在铟锡氧化物(ITO)基底上有效沉积了氧化锌(ZnO)薄膜。分析了氧化锌薄膜的微观结构、光电化学和光学特性与脉冲电沉积参数的函数关系。X 射线衍射分析用于确定结构特性,扫描电镜和原子力显微镜分析用于研究形态特征。X 射线衍射分析表明,制备的薄膜为多晶体,具有 (002) 优先取向的六方菱形结构。扫描电子显微镜(SEM)和原子力显微镜(AFM)图像显示,氧化锌的形态在纳米棒薄膜方向有所改善。利用陶氏关系得出的紫外线透过率数据确定了薄膜的带隙为 3.26 eV。光电流响应表明,氧化锌薄膜具有 305.17 A/cm2 的高值和良好的光学特性。最后对薄膜的甲醇电催化氧化能力进行了评估。在脉冲电沉积模式下进行优化后,氧化锌薄膜的特性和甲醇电催化氧化性能都得到了大幅改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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