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Hydrous RuO_2 nanoparticles coated on Co(OH)_2 nanoflakes as advanced electrode material of supercapacitors

机译:Co(OH)_2纳米薄片上包覆的含水RuO_2纳米颗粒作为超级电容器的高级电极材料

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Cobalt hydroxide nanosheets/ruthenium oxide (Co(OH)(2)/RuO2) nanocomposite on nickel foam was successfully synthesized via a simple electrodeposition process as an advanced supercapacitor electrode material. The microscopy studies reveal that RuO2 nanoparticles are loaded uniformly on interconnected Co(OH)(2) nanosheets forming a three-dimensional (3D) network. The performance optimization of composite is come true through adjusting deposition time of RuO2 nanoparticles. The electrochemical tests indicate that the optimized Co(OH)(2)/RuO2 nanocomposite displays excellent super-capacitive properties. The specific capacitance is up to 2168 F g(-1) as the current density is 1 A g(-1). Compared with the pure Co(OH)(2) and RuO2, the capacitance of the Co(OH)(2)/RuO2 composite increases by 57% and 80%, respectively. The capacitance maintains at 86.0% after 5000 charging and discharging loops at the constant current density of 5 A g(-1), while the pure Co(OH)(2) only maintains 71.7% of the original capacitance after 5000 loops. The asymmetric capacitor assembled using Co(OH)(2)/ RuO2 nanocomposite as positive electrode and activated carbon (AC) as negative electrode exhibits a high energy density of 58.4 W h kg(-1) at a power density of 1.2 kW kg(-1). The good pseudocapacitance behavior of the Co(OH)(2)/RuO2 composite is mainly in virtue of the good synergies between Co(OH)(2) and RuO2 insuring large surface area, rich electrochemical reactive sites, the short diffusion pathways of ions and good electroconductivity during the charge-discharge process.
机译:通过简单的电沉积工艺成功地合成了镍泡沫上的氢氧化钴纳米片/氧化钌(Co(OH)(2)/ RuO2)纳米复合材料,作为一种先进的超级电容器电极材料。显微镜研究表明,RuO2纳米颗粒均匀地负载在互连的Co(OH)(2)纳米片上,形成三维(3D)网络。通过调节RuO2纳米粒子的沉积时间,可以实现复合材料的性能优化。电化学测试表明,优化的Co(OH)(2)/ RuO2纳米复合材料显示出优异的超电容性能。当电流密度为1 A g(-1)时,比电容高达2168 F g(-1)。与纯Co(OH)(2)和RuO2相比,Co(OH)(2)/ RuO2复合材料的电容分别增加了57%和80%。在5 A g(-1)的恒定电流密度下,经过5000次充放电循环后,电容保持在86.0%,而在经过5000次循环后,纯Co(OH)(2)仅保持原始电容的71.7%。以Co(OH)(2)/ RuO2纳米复合材料为正极,活性炭(AC)为负极组装而成的不对称电容器在1.2 kW kg()的功率密度下显示出58.4 W h kg(-1)的高能量密度。 -1)。 Co(OH)(2)/ RuO2复合材料的良好假电容行为主要是由于Co(OH)(2)和RuO2之间的良好协同作用,可确保较大的表面积,丰富的电化学反应位,短的离子扩散路径在充放电过程中具有良好的导电性。

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