首页> 外文期刊>Journal of Materials Science >Carbon xerogels as electrodes for supercapacitors. The influence of the catalyst concentration on the microstructure and on the electrochemical properties
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Carbon xerogels as electrodes for supercapacitors. The influence of the catalyst concentration on the microstructure and on the electrochemical properties

机译:碳干凝胶用作超级电容器的电极。催化剂浓度对微观结构和电化学性能的影响

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摘要

Carbon xerogels, synthesized through the resorcinol–formaldehyde polycondensation and subsequently dried under subcritical condition, have been studied as electrodes for supercapacitors. In particular, the influence of the catalyst concentration has been investigated by systematically changing the amount of catalyst (Na2CO3) utilized to synthesize the xerogels. To clarify the effect of such variable, both the surface properties and the electrochemical behavior of xerogel-based supercapacitors have been examined. From the xerogels characterization, it can be inferred that the amount of catalyst used has a strong influence on the properties of the material. Contrary to what happens with carbon aerogels, the best properties are obtained with the xerogels synthesized with the least amount of catalyst: in this case the highest measured specific capacitance of the supercapacitor cells, which is assembled coupling two symmetric electrodes in series, is 25 F/g, value that corresponds to a single-electrode specific capacitance of 100 F/g. The maximum energy storage capacity in an aqueous electrolyte is 3.1 Wh/kg. Using more concentrated catalyst solutions, the gel microstructure becomes finer, composed of smaller particles and pores, which in turns leads to an increase of the capillary drying stresses and to the collapse of the organic structure. Consequently, the shrinkage of the gels is high and the final carbon xerogels do not posses sufficient surface area and porosity to store a significative amount of energy.
机译:通过间苯二酚-甲醛缩聚反应合成的碳干凝胶,随后在亚临界条件下干燥,已被用作超级电容器的电极。尤其是,通过系统地改变用于合成干凝胶的催化剂(Na2 CO3 )的量,研究了催化剂浓度的影响。为了阐明这种变量的影响,已经研究了基于干凝胶的超级电容器的表面特性和电化学行为。从干凝胶的特征可以推断出催化剂的用量对材料的性能有很大的影响。与碳气凝胶相反,用最少的催化剂合成的干凝胶可获得最佳性能:在这种情况下,超级电容器电池的最高实测比电容为25 F,该超级电容器电池是通过串联连接两个对称电极而组装而成的/ g,它对应于100 F / g的单电极比电容。水性电解质的最大储能容量为3.1 Wh / kg。使用浓度更高的催化剂溶液,凝胶微结构会变得更细,由较小的颗粒和孔组成,从而导致毛细管干燥应力增加,有机结构崩溃。因此,凝胶的收缩率高,并且最终的碳干凝胶没有足够的表面积和孔隙率来存储大量的能量。

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  • 来源
    《Journal of Materials Science》 |2012年第20期|p.7175-7180|共6页
  • 作者单位

    Department of Materials Engineering and Industrial Technologies, Via Mesiano 77, 38123, Trento, Italy;

    Department of Materials Engineering and Industrial Technologies, Via Mesiano 77, 38123, Trento, Italy;

    Department of Materials Engineering and Industrial Technologies, Via Mesiano 77, 38123, Trento, Italy;

    Department of Materials Engineering and Industrial Technologies, Via Mesiano 77, 38123, Trento, Italy;

    Department of Materials Engineering and Industrial Technologies, Via Mesiano 77, 38123, Trento, Italy;

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