Unleashing the Potential of Sodium‐Ion Batteries: Current State and Future Directions for Sustainable Energy Storage

储能 可再生能源 背景(考古学) 可持续能源 纳米技术 持续性 能量密度 电池(电) 材料科学 环境经济学 计算机科学 工程物理 电气工程 工程类 功率(物理) 生态学 古生物学 经济 物理 生物 量子力学
作者
Aditya Narayan Singh,Mobinul Islam,Abhishek Meena,Muhammad Faizan,Daseul Han,Chinna Bathula,Amir Hajibabaei,Rohit Anand,Kyung‐Wan Nam
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:33 (46) 被引量:231
标识
DOI:10.1002/adfm.202304617
摘要

Abstract Rechargeable sodium‐ion batteries (SIBs) are emerging as a viable alternative to lithium‐ion battery (LIB) technology, as their raw materials are economical, geographically abundant (unlike lithium), and less toxic. The matured LIB technology contributes significantly to digital civilization, from mobile electronic devices to zero electric‐vehicle emissions. However, with the increasing reliance on renewable energy sources and the anticipated integration of high‐energy‐density batteries into the grid, concerns have arisen regarding the sustainability of lithium due to its limited availability and consequent price escalations. In this context, SIBs have gained attention as a potential energy storage alternative, benefiting from the abundance of sodium and sharing electrochemical characteristics similar to LIBs. Furthermore, high‐entropy chemistry has emerged as a new paradigm, promising to enhance energy density and accelerate advancements in battery technology to meet the growing energy demands. This review uncovers the fundamentals, current progress, and the views on the future of SIB technologies, with a discussion focused on the design of novel materials. The crucial factors, such as morphology, crystal defects, and doping, that can tune electrochemistry, which should inspire young researchers in battery technology to identify and work on challenging research problems, are also reviewed.
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