材料科学
石墨烯
阳极
超级电容器
电容器
阴极
功率密度
储能
电容
电池(电)
锂离子电池
光电子学
电极
锂(药物)
纳米技术
电压
功率(物理)
电气工程
物理
工程类
内分泌学
物理化学
化学
医学
量子力学
作者
Dong Sui,Manman Wu,Yiyang Liu,Yanliang Yang,Hongtao Zhang,Yanfeng Ma,Long Zhang,Yongsheng Chen
出处
期刊:Nanotechnology
[IOP Publishing]
日期:2020-09-18
卷期号:32 (1): 015403-015403
被引量:44
标识
DOI:10.1088/1361-6528/abb9d8
摘要
Lithium-ion capacitors (LICs) are now drawing increasing attention because of their potential to overcome the current energy limitations of supercapacitors and power limitations of lithium-ion batteries. In this work, we designed LICs by combining an electric double-layer capacitor cathode and a lithium-ion battery anode. Both the cathode and anode are derived from graphene-modified phenolic resin with tunable porosity and microstructure. They exhibit high specific capacity, superior rate capability and good cycling stability. Benefiting from the graphene-enhanced electrode materials, the all graphene-based LICs demonstrate a high working voltage (4.2 V), high energy density of 142.9 Wh kg-1, maximum power density of 12.1 kW kg-1 with energy density of 50 Wh kg-1, and long stable cycling performance (with ∼88% capacity retention after 5000 cycles). Considering the high performance of the device, the cost-effective and facile preparation process of the active materials, this all graphene-based lithium-ion capacitor could have many promising applications in energy storage systems.
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