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一种化学自充电水系锌离子电池。

A chemically self-charging aqueous zinc-ion battery.

作者信息

Zhang Yan, Wan Fang, Huang Shuo, Wang Shuai, Niu Zhiqiang, Chen Jun

机构信息

Key Laboratory of Advanced Energy Materials Chemistry (Ministry of Education), Renewable Energy Conversion and Storage Center, College of Chemistry, Nankai University, Tianjin, 300071, People's Republic of China.

出版信息

Nat Commun. 2020 May 4;11(1):2199. doi: 10.1038/s41467-020-16039-5.

Abstract

Self-charging power systems integrating energy harvesting technologies and batteries are attracting extensive attention in energy technologies. However, the conventional integrated systems are highly dependent on the availability of the energy sources and generally possess complicated configuration. Herein, we develop chemically self-charging aqueous zinc-ion batteries with a simplified two-electrode configuration based on CaVO·3HO electrode. Such system possesses the capability of energy harvesting, conversion and storage simultaneously. It can be chemically self-recharged by the spontaneous redox reaction between the discharged cathode and oxygen from the ambient environment. Chemically self-recharged zinc-ion batteries display an initial open-circuit voltage of about 1.05 V and a considerable discharge capacity of about 239 mAh g, indicating the excellent self-rechargeability. Impressively, such chemically self-charging zinc-ion batteries can also work well at chemical or/and galvanostatic charging hybrid modes. This work not only provides a route to design chemically self-charging energy storage, but also broadens the horizons of aqueous zinc-ion batteries.

摘要

集成能量收集技术和电池的自充电电源系统在能源技术领域正吸引着广泛关注。然而,传统的集成系统高度依赖能源的可用性,并且通常具有复杂的配置。在此,我们基于CaVO·3HO电极开发了具有简化双电极配置的化学自充电水系锌离子电池。这种系统具备同时进行能量收集、转换和存储的能力。它可以通过放电阴极与环境中的氧气之间的自发氧化还原反应进行化学自充电。化学自充电锌离子电池显示出约1.05 V的初始开路电压和约239 mAh g的可观放电容量,表明其具有出色的自充电能力。令人印象深刻的是,这种化学自充电锌离子电池在化学或/和恒电流充电混合模式下也能良好工作。这项工作不仅提供了一种设计化学自充电储能的途径,还拓宽了水系锌离子电池的视野。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23b7/7198488/960d78a55918/41467_2020_16039_Fig1_HTML.jpg

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