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Morphology and Capacitive Properties of RuO_xH_y/Low-Surface Area Carbon Black Composite Materials Prepared by Sol-Gel Procedure

机译:通过溶胶 - 凝胶液制备的Ruo_h_y /低表面积炭黑复合材料的形态学和电容性

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摘要

The morphology and the capacitive properties of carbon supported hydrous ruthenium oxide (RuO_xH_y/C), prepared by impregnation of low-surface area carbon black Vulcan~® XC-72 R with solid phase of RuO_xH_y sol, were investigated by scanning electron microscopy, cyclic voltammetry and electrochemical impedance spectroscopy. The oxide sols of different ageing times, prepared by forced hydrolysis of RuCl_3, were used for composite preparation. The prepared composites show considerably higher capacitance values in acid electrolyte if compared to carbon black support. Microscopic investigations show that the extent of impregnation and the composite surface appearance depend on ageing time. The composite capacitance increases with ageing time of oxide sol. A gradual decrease in capacitance of thermally untreated composite with charging/discharging cycles was registered, which appears to be related to the extent of impregnation, too. Electrochemical impedance spectroscopy measurements indicate an in-depth capacitance distribution through the composite layer. It was found that Nafion~® layer, used to ensure the adhesion of the composite layer to the current collector, influenced the composite impedance behavior, especially on the oxide-rich parts of the composite surface.
机译:通过扫描电子显微镜研究通过浸渍低表面积碳黑硫磺〜βXC-72r XC-72R的碳负载含水钌氧化钌(RuO_H_Y / C)的形态学和电容性。通过扫描电子显微镜,循环伏安和电化学阻抗光谱。通过强制水解RuCl_3制备的不同老化时间的氧化物溶胶用于复合制剂。与炭黑支撑相比,制备的复合材料在酸电解质中显示出相当高的电容值。微观调查表明,浸渍程度和复合表面外观取决于老化时间。复合电容随氧化物溶胶的老化时间增加。注册了具有充电/放电循环的热未经处理的复合材料的电容逐渐降低,似乎也与浸渍程度有关。电化学阻抗光谱测量测量指示通过复合层的深度电容分布。结果发现,用于确保复合层粘附到集电器的Nafion〜®层影响了复合阻抗行为,尤其是在复合表面的富含氧化物部分上。

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