Shin Jaeho, Lee Jimin, Park Youngbin, Choi Jang Wook
School of Chemical and Biological Engineering and Institute of Chemical Processes , Seoul National University , 1 Gwanak-ro, Gwanak-gu , Seoul 08826 , Republic of Korea . Email:
Chem Sci. 2020 Feb 3;11(8):2028-2044. doi: 10.1039/d0sc00022a. eCollection 2020 Feb 28.
Despite the prevalence of lithium ion batteries in modern technology, the search for alternative electrochemical systems to complement the global battery portfolio is an ongoing effort. The search has resulted in numerous candidates, among which mildly acidic aqueous zinc ion batteries have recently garnered significant academic interest, mostly due to their inherent safety. As the anode is often fixed as zinc metal in these systems, most studies address the absence of a suitable cathode for reaction with zinc ions. This has led to aggressive research into viable intercalation cathodes, some of which have shown impressive results. However, many investigations often overlook the implications of the zinc metal anode, when in fact the anode is key to determining the energy density of the entire cell. In this regard, we aim to shed light on the importance of the zinc metal anode. This perspective offers a brief discussion of zinc electrochemistry in mildly acidic aqueous environments, along with an overview of recent efforts to improve the performance of zinc metal to extract key lessons for future research initiatives. Furthermore, we discuss the energy density ramifications of the zinc anode with respect to its weight and reversibility through simple calculations for numerous influential reports in the field. Finally, we offer some perspectives on the importance of optimizing zinc anodes as well as a future direction for developing high-performance aqueous zinc ion batteries.
尽管锂离子电池在现代技术中广泛应用,但寻找替代电化学系统以补充全球电池产品组合的工作仍在持续进行。这一探索产生了众多候选方案,其中轻度酸性水系锌离子电池最近引起了学术界的极大兴趣,主要是因其固有的安全性。在这些系统中,由于阳极通常固定为锌金属,大多数研究关注的是缺乏与锌离子反应的合适阴极。这导致了对可行的插层阴极进行积极研究,其中一些已显示出令人印象深刻的结果。然而,许多研究常常忽视锌金属阳极的影响,而实际上阳极对于确定整个电池的能量密度至关重要。在这方面,我们旨在阐明锌金属阳极的重要性。本观点简要讨论了轻度酸性水性环境中的锌电化学,概述了近期为提高锌金属性能所做的努力,以提取未来研究计划的关键经验教训。此外,我们通过对该领域众多有影响力报告的简单计算,讨论了锌阳极在重量和可逆性方面对能量密度的影响。最后,我们就优化锌阳极的重要性以及开发高性能水系锌离子电池的未来方向提出了一些观点。