超级电容器
氢氧化钾
氮气
多孔性
尿素
钾
材料科学
无机化学
碳纤维
化学工程
化学
废物管理
电化学
复合数
有机化学
冶金
电极
复合材料
工程类
物理化学
作者
Kaixiang Zou,Yuanfu Deng,Juping Chen,Yunqian Qian,Yuewang Yang,Yingwei Li,Guohua Chen
标识
DOI:10.1016/j.jpowsour.2017.12.081
摘要
Abstract Nitrogen-doped carbon with an ultra-high specific surface area and a hierarchically interconnected porous structure is synthesized in large scale from a green route, that is, the activation of bagasse via a one-step method using KOH and urea. KOH and urea play a synergistic effect for the enhancement of the specific surface area and the modification of pore size of the as-prepared material. Benefiting from the multiple synergistic roles originated from an ultra-high specific area (2905.4 m2 g−1), a high porous volume (2.05 mL g−1 with 75.6 vol% micropores, which is an ideal proportion of micropores for obtaining high specific capacitance), a suitable nitrogen content (2.63 wt%), and partial graphitization, the hierarchically interconnected porous N-doped carbon exhibits an excellent electrochemical performance with a high specific capacitance (350.8, 301.9, and 259.5 F g−1 at 1.0 A g−1 in acidic, alkaline, and neutral electrolytes, respectively), superior rate capability and excellent cycling stability (almost no capacitance loss up to 5000 cycles). Furthermore, the symmetric device assembled by this material achieves high energy densities of 39.1 and 23.5 Wh kg−1 at power densities of 1.0 and 20 kW kg−1, respectively, and exhibits an excellent long-term cycling stability (with capacitance retention above 95.0% after 10 000 cycles).
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