杂原子
超级电容器
生物炭
利乐
电化学
水溶液
兴奋剂
能量密度
材料科学
化学工程
化学
纳米技术
有机化学
光电子学
工程物理
工程类
戒指(化学)
物理化学
药物化学
电极
热解
作者
Chunfeng Xue,Lin Ye,Wei Zhao,Teng Wu,Yue-Yue Wei,Xiaohong Li,Wenjun Yan,Xiaogang Hao
标识
DOI:10.1016/j.est.2024.111872
摘要
Developing self-doped carbon electrode material with natural pore system is extremely important to achieve high energy-density for supercapacitors. Herein, we present a promising renewable strategy to convert the biomass, Suaeda Glauca Bunge (SGB), into porous biochar through pore opening by alcohol and pore filling by NaCl crystal. The resultant biochar SGB-700 shows a specific surface area of 684 m2·g−1 and tetra-heteroatom (N, O, S, Cl) doped surface. Interestingly, the typical biochar SGB-700 displays a high specific capacitance of 638 F·g−1 at the current density of 0.5 A·g−1 in the electrolyte of 1.0 M H2SO4. In two electrode system, it offers the specific capacitance of 515 F·g−1 at the current density of 0.5 A·g−1, attractive energy density of 30.2 Wh·kg−1 at power density of 164.0 W·kg−1, good rate capability of 76.1 % at 20.0 A·g−1, and perfect cyclic stability of 107.1 % retention after 12,000 cycles charge-discharge. The assembled supercapacitor can power eleven light-emitting diode (LED) bulbs. The study provides a simple and recyclable method to produce tetra-heteroatom co-doped porous biochar for supercapacitors with high energy density.
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