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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A high energy density asymmetric all-solid-state supercapacitor based on cobalt carbonate hydroxide nanowire covered N-doped graphene and porous graphene electrodes
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A high energy density asymmetric all-solid-state supercapacitor based on cobalt carbonate hydroxide nanowire covered N-doped graphene and porous graphene electrodes

机译:基于碳酸钴氢氧化物纳米线覆盖的N掺杂石墨烯和多孔石墨烯电极的高能量密度不对称全固态超级电容器

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摘要

In order to achieve high energy densities, an asymmetric all-solid-state supercapacitor is developed by synthesizing a novel composite of cobalt carbonate hydroxide (CCH) nanowire covered N-doped graphene (NG) as positive and porous NG as negative electrodes. The CCH-NG composite is obtained from a one-step hydrothermal method, where optimization of the CCH content triples the specific capacitance of porous NG, reaching 1690 F g(-1) at 1.0 A g(-1). The optimal composite exhibits a remarkable cycling stability retaining 94.2% of the initial capacitance after 10 000 cycles, and good rate capability (still 1358 F g(-1) at 10 A g(-1)). The assembled asymmetric supercapacitor based on the optimal composite has a high discharge areal capacitance of 153.5 mF cm(-2) (at 1.0 mA cm(-2), can cycle reversibly in the high-voltage region of 0-1.9 V, and thus provide superior energy and power densities (0.77 W h m(-2) and 25.3 W m(-2)).
机译:为了实现高能量密度,通过合成新型的复合碳酸盐氢氧化物(CCH)纳米线包覆的N掺杂石墨烯(NG)作为正电极和多孔NG作为负极来开发不对称全固态超级电容器。 CCH-NG复合材料是通过一步水热法获得的,其中CCH含量的优化使多孔NG的比电容增加了三倍,在1.0 A g(-1)时达到1690 F g(-1)。最佳复合材料在10 000次循环后显示出显着的循环稳定性,可保留94.2%的初始电容,并具有良好的倍率能力(在10 A g(-1)时仍为1358 F g(-1))。基于最佳复合材料的组装式非对称超级电容器具有153.5 mF cm(-2)的高放电面积电容(在1.0 mA cm(-2)时),可以在0-1.9 V的高压区域中可逆地循环,因此提供出色的能量和功率密度(0.77 W hm(-2)和25.3 W m(-2))。

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