Status and Opportunities of Zinc Ion Hybrid Capacitors: Focus on Carbon Materials, Current Collectors, and Separators

Состояние и перспективы гибридных цинк-ионных конденсаторов: акцент на углеродных материалах, токосъёмниках и сепараторах
Yanyan Wang, Shirong Sun, Xiaoliang Wu, Hanfeng Liang, Wenli Zhang
2023-03-29

carbon-based cathodescurrent collectorselectrochemical energy storageseparatorszinc ion hybrid capacitors
Zinc ion hybrid capacitors (ZIHCs), which integrate the features of the high power of supercapacitors and the high energy of zinc ion batteries, are promising competitors in future electrochemical energy storage applications. Carbon-based materials are deemed the competitive candidates for cathodes of ZIHC due to their cost-effectiveness, high electronic conductivity, chemical inertness, controllable surface states, and tunable pore architectures. In recent years, great research efforts have been devoted to further improving the energy density and cycling stability of ZIHCs. Reasonable modification and optimization of carbon-based materials offer a remedy for these challenges. In this review, the structural design, and electrochemical properties of carbon-based cathode materials with different dimensions, as well as the selection of compatible, robust current collectors and separators for ZIHCs are discussed. The challenges and prospects of ZIHCs are showcased to guide the innovative development of carbon-based cathode materials and the development of novel ZIHCs.
1
Carbon-based cathodes are competitive because they offer low cost, high electronic conductivity, chemical inertness, controllable surface states, and tunable pore architectures.
2
Remaining challenges and future opportunities are outlined to guide carbon-cathode innovation and development of novel ZIHCs.
3
Structural design and modification of carbon materials are identified as approaches to improve ZIHC energy density and cycling stability.
4
The review evaluates carbon cathodes across different dimensions alongside compatible, robust current collectors and separators.
5
Zinc ion hybrid capacitors combine supercapacitors’ high power with zinc ion batteries’ high energy, making them promising electrochemical storage systems.

zinc-ion hybrid capacitors (ZIHCs), including their carbon-based cathodes, current collectors, and separators

the structural design, electrochemical properties, energy density, cycling stability, and component compatibility of carbon-based cathodes and related current collectors and separators

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2023-03-29
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Yanyan Wang
Shirong Sun
Xiaoliang Wu
Hanfeng Liang
Wenli Zhang
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