超级电容器
电容
石墨烯
功率密度
热液循环
复合数
纳米技术
碳纤维
电容感应
阴极
储能
多孔性
导电体
材料科学
化学
化学工程
复合材料
工程类
电化学
电极
电气工程
物理
量子力学
物理化学
功率(物理)
作者
Xiaofei Shan,Luyao Wang,Lili Liu,Yuanmei Zuo,Zheng‐Wen Fu,Jian Wu,I.D. Robertson,Xiaotao Zhang,Ximing Wang
出处
期刊:iScience
[Elsevier]
日期:2024-03-01
卷期号:27 (3): 109228-109228
标识
DOI:10.1016/j.isci.2024.109228
摘要
The increasing need for improved energy storage devices renders it particularly important that inexpensive electrodes with high capacitance, excellent cycling stability, and environment-friendly characteristics are developed. In this study, a wood-derived carbon@reduced graphene (WRG) conductive precursor with an average conductivity of 15.38 S/m was firstly synthesized. The binder-free WRG-MnO2 electrode was successfully constructed by growing MnO2 onto a WRG under hydrothermal conditions. The asymmetric supercapacitor assembled with the WRG-20MnO2 cathode exhibited excellent electrochemical capacitive behavior with a voltage window of 0-2 V, maximum energy density of 52.3 Wh kg-1, and maximum power density of 1642.7 W kg-1, which is mainly due to the distinctive icicle-shaped structure of the MnO2. Thus, a facile strategy for developing high-performance hierarchical porous carbon electrodes that can be used in supercapacitors was developed herein, which may provide new opportunities to improve the high added value of poplar wood.
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