標題: Li-Ion Capacitor Integrated with Nano-network-Structured Ni/NiO/C Anode and Nitrogen-Doped Carbonized Metal-Organic Framework Cathode with High Power and Long Cyclability
作者: Cheng, Chung-Fu
Chen, Yu-Ming
Zou, Feng
Liu, Kewei
Xia, Yanfeng
Huang, Yi-Fan
Tung, Wei-Yao
Krishnan, Mohan Raj
Vogt, Bryan D.
Wang, Chien-Lung
Ho, Rong-Ming
Zhu, Yu
應用化學系
Department of Applied Chemistry
關鍵字: lithium-ion capacitor;nanoporous template;nanocomposite;nanoporous materials;electroless plating;template synthesis
公開日期: 28-八月-2019
摘要: Lithium-ion capacitors (LICs) represent a new type of energy-storage devices, which have combined merits of high energy density Li-ion battery and high power density supercapacitor. Nevertheless, one significant challenge for LICs is the imbalanced kinetics between the fast capacitive cathode and relatively slow intercalation anode that limit the energy-storage performance. Here, the asymmetric LIC devices were developed based on a nitrogen-doped, carbonized zeolitic imidazolate framework (ZIF-8) cathode and a three-dimensional, nano-network-structured, conversion reaction-based Ni/NiO/C anode. These nanostructures associated with both the cathode and anode enable rapid electron and ions transport in the LIC devices, which allows the asymmetric LICs to be operated on either high energy mode (energy density of 114.7 Wh/kg at power density of 98.0 W/kg) or high power mode (power density of 60.1 kW/kg at energy density of 17.6 Wh/kg). The device also exhibited long-term cycle stability with 87% capacitance retention after 12 000 cycles. These results demonstrate that the rational design of nanoporous electrode structures can deliver a balanced, high-performance-activated cZIF-8 vertical bar Ni/NiO/C-based lithium-ion capacitor.
URI: http://dx.doi.org/10.1021/acsami.9b06354
http://hdl.handle.net/11536/152863
ISSN: 1944-8244
DOI: 10.1021/acsami.9b06354
期刊: ACS APPLIED MATERIALS & INTERFACES
Volume: 11
Issue: 34
起始頁: 30694
結束頁: 30702
顯示於類別:期刊論文