超级电容器
比表面积
电容
热解
材料科学
化学工程
碳纤维
介孔材料
电极
多孔性
煤
功率密度
电容器
复合材料
化学
有机化学
催化作用
电气工程
电压
功率(物理)
物理
工程类
复合数
物理化学
量子力学
作者
Nuannuan Yang,Lei Ji,Haichao Fu,Yanfeng Shen,Yan Wang,Jinghai Liu,Liping Chang,Yongkang Lv
标识
DOI:10.1016/j.cclet.2022.03.037
摘要
Hierarchical porous carbon (HPC) from bituminous coal was designed and synthesized through pyrolysis foaming and KOH activation. The obtained HPC (NCF-KOH) were characterized by a high specific surface area (SBET) of 3472.41 m2/g, appropriate mesopores with Vmes/Vtotal of 57%, and a proper amount of surface oxygen content (10.03%). This NCF-KOH exhibited a high specific capacitance of 487 F/g at 1.0 A/g and a rate capability of 400 F/g at 50 A/g based on the three-electrode configuration. As an electrode for a symmetric capacitor, a specific capacitance of 299 F/g at 0.5 A/g was exhibited, and the specific capacitance retained 96% of the initial capacity at 5 A/g after 10,000 cycles. Furthermore, under the power density of 249.6 W/kg in 6 mol/L KOH, a high energy density of 10.34 Wh/kg was obtained. The excellent charge storage capability benefited from its interconnected hierarchical pore structure with high accessible surface area and the suitable amount of oxygen-containing functional groups. Thus, an effective strategy to synthesize HPC for high-performance supercapacitors serves as a promising way of converting coal into advanced carbon materials.
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