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Three-dimensional sulfur-doped graphene supported cobalt-molybdenum bimetallic sulfides nanocrystal with highly interfacial storage capability for supercapacitor electrodes

机译:三维硫掺杂石墨烯负载钴 - 钼双金属硫化物纳米晶体,具有超级电容器电极的高界面储存能力

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In order to obtain electrode materials for supercapacitors with a high specific capacitance, excellent stability and eco-friendly nature, cobalt-molybdenum bimetallic sulfides nanocrystal is designed on high-surface-area three-dimensional sulfur-doped graphene (CoMo2S4/3DSG) via annealing incorporation with hydrothermal method in this paper. We thoroughly investigate the electrochemical properties of CoMo2S4/3DSG composites as electrode materials in KOH and Na2SO4 electrolytes, respectively. The asprepared hybrids display a higher specific capacitance of 1288.33 F g(-1) in the KOH electrolyte than in the Na2SO4 electrolyte (991.67 F g(-1)) at a current density of 1 A g(-1). It maintains more than 90% of its initial specific capacitance in both electrolytes after 2000 cycles. In addition, the asymmetric supercapacitor assembled with CoMo2S4/3DSG (positive electrode) and 3DSG (negative electrode) electrodes show outstanding performance. In the KOH electrolyte, the capacitor CoMo2S4/3DSG//3DSG has a maximum energy density of 38.73 Wh kg(-1) at a power density of 0.81 kW kg(-1) whilst it exhibit an energy density as high as 47.32 Wh kg(-1) at a power density of 0.94 kW kg(-1) in the Na2SO4 electrolyte. This confirms that CoMo2S4/3DSG composites have high capacitance and excellent capacity retention in both KOH and Na2SO4 electrolytes. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为了获得电极材料具有高的比电容,优异的稳定性和生态友好的性质,超级电容器钴 - 钼的双金属硫化物纳米晶体被设计上通过退火高表面区域的三维掺杂的硫 - 石墨烯(CoMo2S4 / 3DSG)掺入与本文水热法。我们彻查CoMo2S4 / 3DSG复合材料的电化学特性作为电极材料在KOH中和Na2SO4电解质,分别。所述asprepared杂种以1 A G(-1)的电流密度显示在KOH电解质1288.33 F G(-1)比硫酸钠电解质(991.67 F G(-1))更高的比电容。它在2000次循环后仍保持90%以上的在两种电解液其初始比电容。另外,随着CoMo2S4 / 3DSG(正电极)和3DSG(负电极)的电极组装在不对称超级电容器表现出优异的性能。在KOH电解质,电容器CoMo2S4 / 3DSG // 3DSG在0.81千瓦公斤(-1),而它显示出的能量密度高达47.32瓦kg的功率密度具有38.73瓦千克(-1)的最大能量密度(-1)在0.94千瓦公斤(-1)在硫酸钠电解质的功率密度。这证实了CoMo2S4 / 3DSG复合材料具有在两个KOH和Na2SO4电解质高容量和优异的容量保持率。 (c)2019 Elsevier Ltd.保留所有权利。

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