电导率
电池(电)
尖晶石
导电体
渗透(认知心理学)
阴极
复合数
锂(药物)
渗流阈值
离子
材料科学
粒子(生态学)
体积分数
化学工程
化学
电阻率和电导率
电气工程
复合材料
工程类
物理
冶金
有机化学
热力学
功率(物理)
地质学
物理化学
神经科学
内分泌学
海洋学
生物
医学
作者
Y.-H. Chen,C.-W. Wang,Gao Liu,Xiangyun Song,Vince Battaglia,A. M. Sastry
出处
期刊:Journal of The Electrochemical Society
[The Electrochemical Society]
日期:2007-01-01
卷期号:154 (10): A978-A978
被引量:147
摘要
The lithium-ion cell has been successively improved with adoption of new cathode electrochemistries, from to higher-capacity to lower cost . The addition of conductive additives to cathode materials has been demonstrated to improve each type. Four systems have emerged as important cathodes in recent studies: (i) the spinel , (ii) , (iii) the "Gen 2" material, , and (iv) the system. The architectures of model composite cathodes were generated using our prior approach in simulating packing of polydisperse arrangements; conductivity was then simulated for several realizations of each case. A key finding was that the conductive coatings significantly improve overall conductivity. Percolation was achieved for the volume fraction of active material in studied cases, which was larger than the percolation threshold for a 3D spherical particulate system. Neither surface nor bulk modifications of active-material particle conductivities seem desirable targets for improvement of laminate conductivity at present. As part of future work, trade-offs between conductivity and capacity will be considered.
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