Suppr超能文献

锌离子电池:弥合从学术界到工业界的差距,实现大规模储能

Zinc ion Batteries: Bridging the Gap from Academia to Industry for Grid-Scale Energy Storage.

作者信息

Liu Sailin, Zhang Ruizhi, Wang Cheng, Mao Jianfeng, Chao Dongliang, Zhang Chaofeng, Zhang Shilin, Guo Zaiping

机构信息

School of Chemical Engineering, Faculty of Sciences, Engineering and Technology, the, University of Adelaide, Adelaide, South Australia, 5000, Australia.

Department of Chemical and Process Engineering, Faculty of Engineering and Physical Sciences, University of Surrey, Guildford, Surrey, GU2 7XH, United Kingdom.

出版信息

Angew Chem Int Ed Engl. 2024 Apr 22;63(17):e202400045. doi: 10.1002/anie.202400045. Epub 2024 Mar 5.

Abstract

Zinc ion batteries (ZIBs) exhibit significant promise in the next generation of grid-scale energy storage systems owing to their safety, relatively high volumetric energy density, and low production cost. Despite substantial advancements in ZIBs, a comprehensive evaluation of critical parameters impacting their practical energy density (E) and calendar life is lacking. Hence, we suggest using formulation-based study as a scientific tool to accurately calculate the cell-level energy density and predict the cycling life of ZIBs. By combining all key battery parameters, such as the capacity ratio of negative to positive electrode (N/P), into one formula, we assess their impact on E. When all parameters are optimized, we urge to achieve the theoretical capacity for a high E. Furthermore, we propose a formulation that correlates the N/P and Coulombic efficiency of ZIBs for predicting their calendar life. Finally, we offer a comprehensive overview of current advancements in ZIBs, covering cathode and anode, along with practical evaluations. This Minireview outlines specific goals, suggests future research directions, and sketches prospects for designing efficient and high-performing ZIBs. It aims at bridging the gap from academia to industry for grid-scale energy storage.

摘要

锌离子电池(ZIBs)因其安全性、相对较高的体积能量密度和较低的生产成本,在下一代电网规模储能系统中展现出巨大潜力。尽管ZIBs取得了重大进展,但仍缺乏对影响其实际能量密度(E)和日历寿命的关键参数的全面评估。因此,我们建议将基于公式的研究作为一种科学工具,以准确计算电池级能量密度并预测ZIBs的循环寿命。通过将所有关键电池参数,如负极与正极的容量比(N/P),整合到一个公式中,我们评估它们对E的影响。当所有参数都得到优化时,我们敦促实现高E的理论容量。此外,我们提出了一个将ZIBs的N/P与库仑效率相关联的公式,用于预测其日历寿命。最后,我们全面概述了ZIBs目前的进展,涵盖了阴极和阳极以及实际评估。这篇迷你综述概述了具体目标,提出了未来的研究方向,并勾勒了设计高效高性能ZIBs的前景。它旨在弥合从学术界到电网规模储能行业的差距。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验