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Electrochemical Properties of Nanoporous Carbon Material in Aqueous Electrolytes

机译:纳米多孔碳材料在水电解质中的电化学性质

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The paper is devoted to the study of the behavior of capacitor type electrochemical system in the К_(+)-containing aqueous electrolytes. Nanoporous carbon material (NCM) was used as the electrode material, obtained by carbonization of plant raw materials with the following chemical activation. Optimization of pore size distribution was carried out by chemical-thermal method using potassium hydroxide as activator. It is shown that obtained materials have high values of capacitance which is realized by charge storage on the electrical double layer and by pseudocapacitive ion storage on the surface of the material. It is established that based on NCM, electrochemical capacitors are stable in all range of current density and material capacity essentially depends on appropriate choice of electrolyte.
机译:本文致力于研究电容器型电化学体系在含К_(+)的水性电解质中的行为。纳米多孔碳材料(NCM)用作电极材料,是通过以下化学活化作用将植物原料碳化而获得的。使用氢氧化钾作为活化剂,通过化学-热方法进行了孔径分布的优化。示出了所获得的材料具有高的电容值,这通过在双电层上的电荷存储和通过在材料表面上的伪电容离子存储来实现。已经确定,基于NCM,电化学电容器在所有范围的电流密度和材料的能力稳定基本上取决于电解质的合适的选择。

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