锂(药物)
容量损失
电池(电)
法拉第效率
离子
电解质
材料科学
计算机科学
化学
纳米技术
物理
医学
热力学
电极
内分泌学
物理化学
功率(物理)
有机化学
作者
Jiyu Cai,Stephen E. Trask,Zhenzhen Yang,Yingying Xie,Wenquan Lu,Thi Thu Hoai Nguyen,Yuzi Liu,Xiangbo Meng,Gabriel M. Veith,Hao Jia,Wu Xu,Zonghai Chen
标识
DOI:10.1038/s41467-025-60833-y
摘要
Abstract Lithium-ion batteries are pivotal for modern energy storage, yet accurately predicting their lifespan remains a critical challenge. While descriptors like coulombic efficiency are widely used to assess battery longevity, the unclear physical origins of coulombic losses cause semi-quantitative correlation with capacity, complicating battery development. Here, we combine high-precision leakage current and open-circuit-voltage measurements with charge conservation principles to explore microscopic charge consumptions at electrode-electrolyte interfaces across diverse chemistries. We demonstrate that coulombic loss arises from a synergy between local charge neutrality and global charge compensation, reconciling its quantitative correlation to capacity. Contrary to conventional assumptions equating coulombic loss with irreversible capacity loss, this framework resolves systematic overestimations and paradoxical phenomena in existing chemistries. Our findings establish physics-informed criteria for accelerated lifespan evaluation and guide rational design of long-life lithium-ion batteries and beyond.
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