聚丙烯腈
超级电容器
电解质
比表面积
材料科学
电容
化学工程
多孔性
电化学
活性炭
碳纤维
微型多孔材料
打赌理论
电极
复合材料
化学
吸附
有机化学
催化作用
工程类
物理化学
复合数
聚合物
作者
Weijun Ma,Zejia Zhu,Xuxin Qiu,Yuting Yan,Dongdong Zhang,Yongdong Jiang
标识
DOI:10.1002/chem.202404507
摘要
Abstract The porous structural tailoring of polyacrylonitrile‐based carbon materials is the key to maximize capacitive performance. Herein, hierarchical porous carbons (HPC) with high specific surface area and controllable porosity are synthesized by preoxidation assisted alkali activation strategy using polyacrylonitrile as the precursor. The results show that high preoxidation temperature is beneficial to increase the specific surface area and pore volume of HPC. The optimized HPC‐300 has a high BET specific surface area of 3161 m 2 g −1 , a micropore volume of 1.45 cm 3 g −1 , and an A D /A G of 3.56. Electrochemical test shows that the specific capacitances of HPC‐300 in 6 M KOH electrolyte at 1 A g −1 and 10 A g −1 are 314.1 F g −1 and 213.0 F g −1 , respectively, with a capacitance retention of 67.8 %. The assembled supercapacitors based on HPC‐300 deliver an energy density of 11.7 Wh kg −1 at a power density of 250.0 W kg −1 in KOH electrolyte and 21.1 Wh kg −1 at 450.0 W kg −1 in Na 2 SO 4 electrolyte and possess a capacitance retention of 98.1 % over 20,000 charge‐discharge cycles. This preoxidation coupled activation method provides a potential strategy for the preparation of PAN‐based porous carbon with high specific surface area and capacitance.
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