超级电容器
离子液体
碳纤维
杂原子
材料科学
电容
功率密度
多孔性
纳米技术
碳化
化学工程
电解质
电极
复合材料
化学
复合数
有机化学
催化作用
功率(物理)
戒指(化学)
物理化学
工程类
物理
量子力学
扫描电子显微镜
作者
Youning Gong,Delong Li,Qiang Fu,Yupeng Zhang,Chunxu Pan
标识
DOI:10.1021/acsaem.9b02077
摘要
Supercapacitor electrodes based on carbonaceous materials with hierarchical porosity and localized graphitic structure can help supercapacitors to achieve considerable energy capacity. In this work, chitosan-derived hierarchically porous graphitic carbon (CS-HPGC) with nitrogen self-doping was synthesized via a simple and green approach using potassium ferrate (K2FeO4). Different from conventional templating or two-step strategies, this method allows the accomplishment of carbonization, graphitization, and heteroatom modification in a one-step process. Endowed with the characteristics of hierarchical porosity, high graphitization degree, and N-doping, the CS-HPGC electrode showed a high specific capacitance of 332 F g–1 at 0.5 A g–1. Furthermore, the assembled CS-HPGC symmetric supercapacitors delivered an energy density of 10.2 Wh kg–1 at the power density of 100 W kg–1 in aqueous electrolyte (KOH) and 63.3 Wh kg–1 at 300 W kg–1 in ionic liquid electrolyte (EMIM TFSI). This synthetic strategy may pave the way for the development of natural and renewable biomass resources for sustainable energy systems.
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