Pseudo-capacitance of ruthenium oxide/carbon black composites for electrochemical capacitors

Xiaofeng Wang , Dianbo Ruan , Peng Wang , Yiqiang Lu
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引用次数: 5

Abstract

Hydrous ruthenium oxide was formed by a new process. The precursor was obtained by mixing the aqueous solutions of RuCl3·xH2O and NaHCO3. The addition of NaHCO3 led to the formation of an oxide with extremely fine RuO2 particles forming a porous network structure in the oxide electrode. Polyethylene glycol was added as a controller to partly inhibit the sol-gel reaction. The rate capacitance of 530 F·g−1 was measured for the powder formed at an optimal annealing temperature of 210°C. Several details concerning this new material, including crystal structure, particle size as a function of temperature, and electrochemical properties, were also reported. In addition, the rate capacitance of the composite electrode reached 800 F·g−1 after carbon black was added. By using the modified electrode of a RuO2/carbon black composite electrode, the electrochemical capacitor exhibits high energy density and stable power characteristics. The values of specific energy and maximum specific power of 24 Wh·kg−1 and 4 kW·kg−1, respectively, are demonstrated for a cell voltage between 0 and 1 V.

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电化学电容器用氧化钌/炭黑复合材料的赝电容
采用新工艺制备了水合氧化钌。该前驱体由RuCl3·xH2O和NaHCO3的水溶液混合得到。NaHCO3的加入导致形成具有极细RuO2颗粒的氧化物,在氧化物电极中形成多孔网络结构。加入聚乙二醇作为控制剂,部分抑制了溶胶-凝胶反应。在210℃的最佳退火温度下,粉末的速率电容达到530 F·g−1。报道了这种新材料的一些细节,包括晶体结构、粒径随温度的变化以及电化学性能。添加炭黑后,复合电极的速率电容可达800 F·g−1。采用改性的RuO2/炭黑复合电极制备的电化学电容器具有高能量密度和稳定的功率特性。当电池电压在0 ~ 1v之间时,比能量和最大比功率分别为24 Wh·kg - 1和4 kW·kg - 1。
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