N, O self-codoped hierarchical porous carbon from chitosan for supercapacitor electrode active materials

被引:0
|
作者
Xiao-Li Zhang
Cui-Ning Feng
Hong-Ping Li
Xiu-Cheng Zheng
机构
[1] Zhengzhou University,Green Catalysis Center, College of Chemistry
[2] Nankai University,Key Laboratory of Advanced Energy Materials Chemistry (Ministry of Education), College of Chemistry
来源
Cellulose | 2021年 / 28卷
关键词
Chitosan; N, O self-doping; Hierarchical porous carbon; Capacitive behavior; Electrochemical energy storage;
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中图分类号
学科分类号
摘要
The oxygen and nitrogen self-codoped activated carbon nanosheets are facilely prepared from chitosan by using ZnCl2. The optimal carbon possesses a significantly increased specific surface area (SBET = 1679 m2 g− 1) and richer porosity (Vp = 0.792 cm3 g− 1) in comparison with the pristine carbon prepared without using ZnCl2 (Vp = 0.035 cm3 g− 1, SBET = 80 m2 g− 1). The well-developed hierarchical porous structure and high heteroatom contents (N 7.35 at%, O 8.96 at%) endow the optimal carbon superior capacitive performance. It delivers a specific capacitance of 287.94 F g− 1 at 1.0 A g− 1 in the three-electrode supercapacitors. Moreover, the optimal carbon-based symmetric supercapacitor achieves an energy density of 28.74 Wh kg− 1 when the power density is 399.92 W kg− 1, and demonstrates satisfactory cycling stability. Our work provides an effective way for fabricating heteroatom self-doped porous carbon materials for advanced electrochemical energy storage devices.
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页码:437 / 451
页数:14
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