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基于相场法的固态电解质内锂枝晶生长的形貌调控及抑制策略 被引量:1
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作者 杨佳悦 赵莹 《应用数学和力学》 北大核心 2025年第3期324-339,共16页
传统液态电解质的易燃易爆性带来的安全隐患,推动了基于固态电解质系统的全固态锂电池开发.然而,锂枝晶生长问题仍然是阻碍固态锂电池商业化应用的一个亟待解决的关键难题.因此,深入探究固态电解质内锂枝晶生长的形貌调控机制及抑制策略... 传统液态电解质的易燃易爆性带来的安全隐患,推动了基于固态电解质系统的全固态锂电池开发.然而,锂枝晶生长问题仍然是阻碍固态锂电池商业化应用的一个亟待解决的关键难题.因此,深入探究固态电解质内锂枝晶生长的形貌调控机制及抑制策略,对于提高固态锂电池的循环寿命并推动其广泛应用至关重要.该工作基于相场法,通过构建力-电化学的多场耦合模型,动态地演示了锂枝晶生长形貌及其力学行为,并探讨了模型参数/条件对锂枝晶形貌的调控和抑制作用.结果表明:低水平的界面反应率系数能有效减缓锂枝晶的生长速度,同时还极大地降低了其根部承受大机械应力的范围;通过改变固态电解质材料内锂离子的各向异性扩散程度,可以实现枝晶形貌从纤维状到扁平状的转变;多晶成核对于晶间相互靠近的侧枝具有抑制作用,最高应力为单晶成核的3~5倍;高弹性模量的固态电解质对于锂枝晶生长有显著的力学抑制作用.该研究有望为固态电解质的优化设计以抑制固态锂金属电池的枝晶生长提供参考. 展开更多
关键词 力-化-电耦合 枝晶生长与抑制 全固态 相场法
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Aging Characteristics of Lithium-Ion Battery Under Fast Charging Based on Electrochemical-thermalmechanical Coupling Model
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作者 Dong-Xu Zuo Pei-Chao Li 《电化学(中英文)》 CAS 北大核心 2024年第9期10-24,共15页
The aging characteristics of lithium-ion battery(LIB)under fast charging is investigated based on an electrochemical-thermal-mechanical(ETM)coupling model.Firstly,the ETM coupling model is established by COMSOL Multip... The aging characteristics of lithium-ion battery(LIB)under fast charging is investigated based on an electrochemical-thermal-mechanical(ETM)coupling model.Firstly,the ETM coupling model is established by COMSOL Multiphysics.Subsequently,a long cycle test was conducted to explore the aging characteristics of LIB.Specifically,the effects of charging(C)rate and cycle number on battery aging are analyzed in terms of nonuniform distribution of solid electrolyte interface(SEI),SEI formation,thermal stability and stress characteristics.The results indicate that the increases in C rate and cycling led to an increase in the degree of nonuniform distribution of SEI,and thus a consequent increase in the capacity loss due to the SEI formation.Meanwhile,the increases in C rate and cycle number also led to an increase in the heat generation and a decrease in the heat dissipation rate of the battery,respectively,which result in a decrease in the thermal stability of the electrode materials.In addition,the von Mises stress of the positive electrode material is higher than that of the negative electrode material as the cycling proceeds,with the positive electrode material exhibiting tensile deformation and the negative electrode material exhibiting compressive deformation.The available lithium ion concentration of the positive electrode is lower than that of the negative electrode,proving that the tensile-type fracture occurring in the positive material under long cycling dominated the capacity loss process.The aforementioned studies are helpful for researchers to further explore the aging behavior of LIB under fast charging and take corresponding preventive measures. 展开更多
关键词 Lithium-ion battery Aging characteristics Fast charging Electrochemical-thermal-mechanical coupling model
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