首页|期刊导航|Nano-Micro Letters|Interfacial Evolution and Accelerated Aging Mechanism for LiFePO_(4)/Graphite Pouch Batteries Under Multi-Step Indirect Activation
Interfacial Evolution and Accelerated Aging Mechanism for LiFePO_(4)/Graphite Pouch Batteries Under Multi-Step Indirect Activation
Yun Liu Jinyang Dong Jialong Zhou Yibiao Guan Yimin Wei Jiayu Zhao Jinding Liang Xixiu Shi Kang Yan Yun Lu Ning Li Yuefeng Su Feng Wu Lai Chen
Nano-Micro Letters2026,Vol.18Issue(4):P.735-754,20.
Nano-Micro Letters2026,Vol.18Issue(4):P.735-754,20.DOI:10.1007/s40820-025-01971-2
Interfacial Evolution and Accelerated Aging Mechanism for LiFePO_(4)/Graphite Pouch Batteries Under Multi-Step Indirect Activation
摘要
关键词
Accelerated aging/Electrode/electrolyte interface/Multi-step segmented indirect activation/EEI film/Dissolve of Fe ions分类
信息技术与安全科学引用本文复制引用
Yun Liu,Jinyang Dong,Jialong Zhou,Yibiao Guan,Yimin Wei,Jiayu Zhao,Jinding Liang,Xixiu Shi,Kang Yan,Yun Lu,Ning Li,Yuefeng Su,Feng Wu,Lai Chen..Interfacial Evolution and Accelerated Aging Mechanism for LiFePO_(4)/Graphite Pouch Batteries Under Multi-Step Indirect Activation[J].Nano-Micro Letters,2026,18(4):P.735-754,20.基金项目
supported by the National Key R&D Program of China(2021YFB2401800) (2021YFB2401800)
the support from Beijing Nova Program(20230484241) (20230484241)
the support from the China Postdoctoral Science Foundation(2024M754084) (2024M754084)
the Postdoctoral Fellowship Program of CPSF(GZB20230931) (GZB20230931)
the support from Initial Energy Science&Technology Co.,Ltd(IEST)。 (IEST)