Recent advances in zinc-ion hybrid energy storage: Coloring high-power capacitors with battery-level energy

Recent advances in zinc-ion hybrid energy storage: Coloring high-power capacitors with battery-level energy
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锌离子混合储能最新进展:用电池级能量为高功率电容器着色

DOI:
10.1016/j.cclet.2022.107784
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发表时间:
2022
影响因子:
9.1
通讯作者:
Mingxian Liu
Mingxian Liu
中科院分区:
化学1区
文献类型:
--
作者:
Ling Miao;Yaokang Lv;Dazhang Zhu;Liangchun Li;Lihua Gan;Mingxian Liu

文献摘要

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锌离子混合电容器(ZIC)由于集电容级功率和电池级能量于一体,被认为是一种新兴的、具有竞争力的储能器件。新兴ZIC的实际应用仍然面临着两种储能机制不同的电极之间的比容量和动态失配,无法满足便携式电子显示器和公共交通设施日益增长的指示需求。针对这些尚未解决的问题,本文介绍了ZIC的最新进展,涉及混合储能机制,电容器型和电池型电极材料的设计策略,以及电解质研究的先进性能(例如,操作潜力高,适应温度广)。最后,当前的挑战和未来的展望已被提出,以指导进一步探索下一代ZIC与高功率传输,高能量输出和高质量的服务耐久性的组合。介绍了锌离子混合电容器的最新进展,以弥补上级能量存储的比容量和动态失配。
Zinc-ion hybrid capacitors (ZICs) are considered as newly-emerging and competitive candidates for energy storage devices due to the integration of characteristic capacitor-level power and complementary battery-level energy. The practical application of rising ZICs still faces the specific capacity and dynamics mismatch between the two electrodes with different energy storage mechanisms, which cannot meet the ever-growing indicator demand for portable electronic displays and public traffic facilities. Focusing on these unresolved issues, this mini-review presents recent advances in ZICs referring to the hybrid energy storage mechanism, design strategies of both capacitor-type and battery-type electrode materials, and electrolyte research toward advanced performances (e.g., high operational potential, wide adaptive temperature). Finally, current challenges and future outlook have been proposed to guide further exploration of next-generation ZICs with a combination of high-power delivery, high-energy output and high-quality service durability. Recent advances in zinc-ion hybrid capacitors are versatilely presented to remedy the specific capacity and dynamics mismatch for superior energy storage.