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Electrodeposited MnOx Films from Ionic Liquid for Electrocatalytic Water Oxidation

机译:离子液体电沉积MnOx薄膜用于电催化水氧化

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A novel method for the electrodeposition of highly active water oxidation catalysts is described. The manganese oxide (MnOx) films are electrodeposited on fluorine tin oxide (FTO) glass substrate at high temperature (120 °C) from an ionic liquid electrolyte (ethylammonium nitrate). A range of analytical techniques, including X-ray absorption spectroscopy (XAS), X-ray diffraction (XRD), and energy-dispersive X-ray analyzer (EDX), indicate that the valence state of manganese in the deposited films can be controlled by changing the electrolyte composition. Along with the different phase compositions, a number of different morphologies including nanowires, nanoparticles, nanofibers as well as highly open and dense structures are obtained by varying the acidity of the electrolyte. The effect of morphology and chemical composition on the catalytic activity towards water oxidation is investigated. The film composed of Mn3O4 shows low catalytic activities, while the films composed of birnessite-like manganese oxide phase and Mn2O3 exhibit high catalytic activities for water oxidation. The catalytic activities are also affected by the surface morphology, i.e., a higher surface area and more open structure shows a higher catalytic activity. High rates of oxygen production are observed from MnOx films prepared in a neutral electrolyte.
机译:描述了一种电沉积高活性水氧化催化剂的新方法。氧化锰(MnOx)膜在高温(120°C)下从离子液体电解质(硝酸乙铵)电沉积在氟锡氧化物(FTO)玻璃基板上。包括X射线吸收光谱(XAS),X射线衍射(XRD)和能量色散X射线分析仪(EDX)在内的多种分析技术表明,可以控制沉积膜中锰的价态。通过改变电解质成分。随着不同的相组成,通过改变电解质的酸度可以获得许多不同的形态,包括纳米线,纳米粒子,纳米纤维以及高度开放和致密的结构。研究了形态和化学组成对水氧化催化活性的影响。由Mn3O4组成的膜显示出低的催化活性,而由水钠锰矿状的锰氧化物相和Mn2O3组成的膜对水氧化具有高的催化活性。催化活性也受表面形态的影响,即,较高的表面积和更开放的结构显示较高的催化活性。从在中性电解质中制备的MnOx薄膜观察到高的产氧速率。

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