储能
电池(电)
有机自由基电池
电化学储能
纳米技术
锂(药物)
计算机科学
超级电容器
工艺工程
材料科学
电化学
工程类
化学
内分泌学
功率(物理)
物理化学
物理
医学
量子力学
电极
作者
Sen Xin,Xu Zhang,Lin Wang,Haijun Yu,Xin Chang,Yuming Zhao,Qinghai Meng,Pan Xu,Chen‐Zi Zhao,Jiahang Chen,Huichao Lü,Xirui Kong,Jiulin Wang,Kai Chen,Gang Huang,Xinbo Zhang,Yu Su,Yao Xiao,Shulei Chou,Shilin Zhang
标识
DOI:10.1007/s11426-023-1908-9
摘要
Rechargeable batteries currently hold the largest share of the electrochemical energy storage market, and they play a major role in the sustainable energy transition and industrial decarbonization to respond to global climate change. Due to the increased popularity of consumer electronics and electric vehicles, lithium-ion batteries have quickly become the most successful rechargeable batteries in the past three decades, yet growing demands in diversified application scenarios call for new types of rechargeable batteries. Tremendous efforts are made to developing the next-generation post-Li-ion rechargeable batteries, which include, but are not limited to solid-state batteries, lithium–sulfur batteries, sodium-/potassium-ion batteries, organic batteries, magnesium-/zinc-ion batteries, aqueous batteries and flow batteries. Despite the great achievements, challenges persist in precise understandings about the electrochemical reaction and charge transfer process, and optimal design of key materials and interfaces in a battery. This roadmap tends to provide an overview about the current research progress, key challenges and future prospects of various types of rechargeable batteries. New computational methods for materials development, and characterization techniques will also be discussed as they play an important role in battery research.
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