材料科学
纳米技术
持续性
电池(电)
可扩展性
桥(图论)
系统工程
高效能源利用
数码产品
可持续能源
电极
有机自由基电池
计算机科学
风险分析(工程)
生化工程
能量(信号处理)
储能
低能
建筑工程
工艺工程
制造工程
作者
Zhenfei Li,Mengjie Li,Xuewu Gao,Kuilong Hou,Haoran Tang,Fei Huang,Yunhua Xu
摘要
Lithium-organic batteries have attracted increasing attention in recent years due to the sustainability and highly tunable molecular structures of organic electrode materials. Despite promising results reported in the literature, transitioning these systems to practical applications remains a significant challenge due to the dissolution and low intrinsic electronic conductivity of organic electrode materials. This Review seeks to bridge the gap between fundamental research and practical applications by outlining comprehensive strategies for developing viable lithium-organic battery systems. Accelerating practical application will require improvements in electronic conductivity and redox-site accessibility at the material level, while advancing electrode manufacturing and cell assembly to enable scalable production. Critical performance metrics, such as energy density, cycling stability, and safety, are discussed to assess the feasibility of organic batteries across different application conditions. This review aims to provide guidance toward a more sustainable and environmentally responsible energy future.
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