期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
固液界面的力-电-化学耦合及在电催化体系中的应用 被引量:4
1
作者 邓齐波 贾涵杏 +4 位作者 杨波 齐正磐 张哲绎 阿拉木斯 胡宁 《力学进展》 EI CSCD 北大核心 2022年第2期221-252,共32页
目前许多新型高效金属催化剂在设计制备中都考虑到表面力学因素,例如层状结构、核壳结构等,其表面高活性原子受到不同程度的应变作用.应变可直接改变金属的能带带隙,对催化剂表面的电化学反应产生显著影响,是一种有效提升材料催化活性... 目前许多新型高效金属催化剂在设计制备中都考虑到表面力学因素,例如层状结构、核壳结构等,其表面高活性原子受到不同程度的应变作用.应变可直接改变金属的能带带隙,对催化剂表面的电化学反应产生显著影响,是一种有效提升材料催化活性的新思路和制备高性能催化剂的新途径,因此受到了科研工作者的广泛关注.传统的材料应变工程手段存在着活性物质层的应变值难以精确定量,并缺少实时调控以及制备工艺繁琐等难题,导致应变与电催化活性相关性规律识别方面的理论和实验研究进展缓慢.相比于传统的材料手段,交变载荷产生的应变具有幅值和频率的可变性以及连续的调控性,在实验中可以完全排除噪声、缺陷、空位、基底效应等其他外部或材料本征的影响因素.该综述从经典固液界面热力学表述出发,简要介绍了电催化体系中的力-电-化学耦合效应,归纳总结目前电催化体系中应变施加的实验手段和分析方法,并基于目前相关研究着重讨论在交变载荷作用下应变对金属表面电催化反应的作用机理,最后从力学角度展望了表面力学在电催化体系中的研究重点及发展趋势. 展开更多
关键词 力-电-化学耦合 化学麦克斯韦关系式 交变载荷 应变工程 催化动学模型
在线阅读 下载PDF
Aging Characteristics of Lithium-Ion Battery Under Fast Charging Based on Electrochemical-thermalmechanical Coupling Model
2
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
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部