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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Structural and electrochemical analysis of a novel co-electrodeposited Mn2O3-Au nanocomposite thin film
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Structural and electrochemical analysis of a novel co-electrodeposited Mn2O3-Au nanocomposite thin film

机译:新型共电沉积Mn2O3-Au纳米复合薄膜的结构和电化学分析

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In this work we report the fabrication of both pristine Mn2O3 and Mn2O3-Au composite thin films on an indium tin oxide (ITO) substrate by a one-step novel co-electrodeposition technique. From the electron microscopy study, we observed that these two films are morphologically different. The main aim of this study is to understand the effect of the nanostructure and metal integration on the electrochemical charge storage properties of these two films. Since a charge storage mechanism is possible through faradic red-ox reaction and non-faradic double layered process, electrochemical characterization and frequency response analysis indicate better charge storage properties of the composite system over pristine Mn2O3. The Mott-Schottky analysis is used for the charge carrier estimation which provides the electronic properties of both the samples. Besides the mechanism of the co-electrodeposition technique, we also discuss in detail the material characterization of both pristine Mn2O3 and Mn2O3-Au composite samples using XRD, EELS and electron microscopy analysis. To the best of our knowledge, the electrochemical properties of the Mn2O3-Au composite sample are reported here for the first time.
机译:在这项工作中,我们报告了通过一步式新型共电沉积技术在铟锡氧化物(ITO)基底上同时制备原始Mn2O3和Mn2O3-Au复合薄膜。从电子显微镜研究中,我们观察到这两个膜在形态上是不同的。这项研究的主要目的是了解纳米结构和金属集成对这两种膜的电化学电荷存储性能的影响。由于通过法拉第氧化还原反应和非法拉第双层过程可以实现电荷存储机制,因此电化学表征和频率响应分析表明,复合体系的电荷存储性能优于原始Mn2O3。莫特-肖特基分析用于电荷载流子估计,该估计提供了两个样品的电子性质。除了共电沉积技术的机理外,我们还将详细讨论使用XRD,EELS和电子显微镜分析对原始Mn2O3和Mn2O3-Au复合样品的材料表征。据我们所知,此处首次报道了Mn2O3-Au复合样品的电化学性能。

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