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锂离子电池界面物理化学过程的原位扫描探针显微研究(英文)被引量:4
2015年
锂离子电池的电极/电解液界面过程和性质对电池的性能起着至关重要的作用.本文综述了近年来原位扫描探针显微技术在锂离子电池界面研究中的应用进展,着重介绍了电化学原子力显微镜(EC-AFM)、扫描电化学显微镜(SECM)和扫描离子电导显微镜(SICM)在电极界面的形貌、力学性质和电化学性质等方面的研究技术和方法.此外,还讨论了适合于开展原位扫描探针研究的电极样品的制备方法,并展望了对扫描探针显微技术对从纳米尺度研究锂离子电池电极界面物理化学过程的前景.
刘兴蕊王栋万立骏
关键词:扫描探针显微镜锂离子电池电池电极原位
Morphology and modulus evolution of graphite anode in lithium ion battery:An in situ AFM investigation被引量:7
2014年
We investigated the interfacial electrochemical processes on graphite anode of lithium ion battery by using highly oriented pyrolytic graphite(HOPG)as a model system.In situ electrochemical atomic force microscopy experiments were performed in 1M lithium bis(trifluoromethanesulfonyl)imide/ethylene carbonate/diethyl carbonate to reveal the formation process of solid electrolyte interphase(SEI)on HOPG basal plane during potential variation.At 1.45 V,the initial deposition of SEI began at the defects of HOPG surface.After that,direct solvent decomposition took place at about 1.3 V,and the whole surface was covered with SEI.The thickness of SEI was 10.4±0.2 nm after one cycle,and increased to 13.8±0.2 nm in the second cycle,which is due to the insufficient electron blocking ability of the surface film.The Young’s modulus of SEI was measured by a peak force quantitative nanomechanical mapping(QNM).The Young’s modulus of SEI is inhomogeneous.The statistic value is 45±22 MPa,which is in agreement with the organic property of SEI on basal plane of HOPG.
DENG XinLIU XingRuiYAN HuiJuanWANG DongWAN LiJun
关键词:LITHIUMSITU
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