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Electrochemical behaviour of metal hexacyanoferrate converted to metal hydroxide films immobilized on indium tin oxide electrodes-Catalytic ability towards alcohol oxidation in alkaline medium

机译:固定在铟锡氧化物电极上的六氰合高铁酸金属盐转化为金属氢氧化物膜的电化学行为-碱性介质中乙醇氧化的催化能力

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摘要

In this work, we demonstrate a simple method to modify indium tin oxide (ITO) electrodes in order to perform electro-catalytic oxidation of alcohols in alkaline medium. Metal hexacyanoferrate (MHCF) films such as nickel hexacyanoferrate (NiHCF) and copper hexacyanoferrate (CuHCF) were successfully immobilized on ITO electrodes using an electrochemical method. Scanning electron microscopy (SEM) and X-ray photoelectron spectroscopy (XPS) were employed to characterize the structural and morphological aspects of MHCF films. Cyclic voltammetry (CV) was used to study the redox properties and to determine the surface coverage of these films on ITO electrodes. Electrochemical potential cycling was carried out in alkaline medium in order to alter the chemical structure of these films and convert to their corresponding metal hydroxide films. SEM and XPS were performed to analyze the structure and morphology of metal hydroxide modified electrodes. Electro-catalytic oxidation ability of these films towards methanol and ethanol in alkaline medium was investigated using CV. From these studies we found that metal hydroxide modified electrodes show a better catalytic performance and good stability for methanol oxidation along with the alleviation of CO poisoning effect. We have obtained an anodic oxidation current density of ~82 mA cm~(-2) for methanol oxidation, which is at least 10 fold higher than that of any metal hydroxide modified electrodes reported till date. The onset potential for methanol oxidation is lowered by ~200 mV compared to other chemically modified electrodes reported. A plausible mechanism was proposed for the alcohol oxidation based on the redox properties of these modified electrodes. The methodology adapted in this work does not contain costlier noble metals like platinum and ruthenium and is economically viable.
机译:在这项工作中,我们演示了一种简单的方法来修饰铟锡氧化物(ITO)电极,以便在碱性介质中进行醇的电催化氧化。使用电化学方法将六氰合铁酸镍(NiHCF)和六氰合铁酸铜(CuHCF)等金属六氰合铁酸盐(MHCF)膜成功固定在ITO电极上。扫描电子显微镜(SEM)和X射线光电子能谱(XPS)被用来表征MHCF膜的结构和形态方面。循环伏安法(CV)用于研究氧化还原特性并确定这些膜在ITO电极上的表面覆盖率。为了改变这些膜的化学结构并转化为其相应的金属氢氧化物膜,在碱性介质中进行了电化学势循环。用SEM和XPS分析了金属氢氧化物修饰电极的结构和形貌。使用CV研究了这些膜在碱性介质中对甲醇和乙醇的电催化氧化能力。从这些研究中,我们发现金属氢氧化物修饰的电极显示出更好的催化性能和对甲醇氧化的良好稳定性,同时减轻了CO中毒作用。我们获得的甲醇氧化阳极氧化电流密度为〜82 mA cm〜(-2),比迄今报道的任何金属氢氧化物修饰电极高至少10倍。与其他报道的化学修饰电极相比,甲醇氧化的起始电位降低了约200 mV。根据这些修饰电极的氧化还原特性,提出了一种可行的醇氧化机理。这项工作中采用的方法学不包含昂贵的贵金属,如铂和钌,在经济上可行。

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