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首页> 外文期刊>The journal of physics and chemistry of solids >Facile synthesis of RuO2 nanoparticles anchored on graphene nanosheets for high performance composite electrode for supercapacitor applications
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Facile synthesis of RuO2 nanoparticles anchored on graphene nanosheets for high performance composite electrode for supercapacitor applications

机译:超级电容器应用的高效复合电极锚定的RuO2纳米粒子的体内合成

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Ruthenium oxide/graphene (RuO2/G) nanocomposites for supercapacitor applications were prepared by a hydrothermal method using high-quality graphene, which was synthesized by modified hummer's method from the graphite. The results reveal that the RuO2 nanoparticles are evenly dispersed on the graphene sheets. The contact between the RuO2 nanoparticles and graphene can effectively improve the conductivity of RuO2 and prevent the restacking and agglomeration of graphene. In addition, the composites exhibit a good electrochemical-activation behavior, and the graphene in composites significantly influences the electrochemical performance. The RuO2/G composite displays a specific capacitance of 441.1 F g(-1) at 0.1 A g(-1), and only 6% of the capacitance degrades after 1000 cycles, which demonstrates the composite's excellent cycle stability. Significantly, the RuO2/G composites can achieve a high voltage window of 1.6 V and increase energy density of 61.2 Wh kg(-1) at a power density of 183.8 W kg(-1) at 1 M of Na2SO4 electrolyte. This attractive performance makes it a promising candidate as an electrode material for supercapacitors.
机译:用于超级电容器应用的氧化钌/石墨烯(RUO2 / g)纳米复合材料通过使用高质量石墨烯的水热法制备,其通过从石墨中改进的悍马方法合成。结果表明,RuO2纳米颗粒均匀地分散在石墨烯片上。 RuO2纳米颗粒和石墨烯之间的接触可以有效地改善RuO2的导电性,并防止石墨烯的重新包装和附聚。另外,复合材料表现出良好的电化学激活行为,复合材料中的石墨烯显着影响电化学性能。 Ruo2 / g复合材料在0.1Ag(-1)时显示441.1f g(-1)的特定电容,并且在1000个循环后,仅6%的电容降低,这表明了复合材料的优异循环稳定性。值得注意的是,RuO2 / g复合材料可以在Na 2 SO 4电解质的1M处以183.8W kg(-1)的功率密度,在1.6V的高压窗口中达到1.6V的高压窗口,并在183.8Wkg(-1)的功率密度下增加。这种有吸引力的性能使其成为超级电容器的电极材料的承诺候选者。

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