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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Impedance Spectroscopy Characterization of Porous Electrodes under Different Electrode Thickness Using a Symmetric Cell for High-Performance Lithium-Ion Batteries
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Impedance Spectroscopy Characterization of Porous Electrodes under Different Electrode Thickness Using a Symmetric Cell for High-Performance Lithium-Ion Batteries

机译:高性能锂离子电池对称电池对不同电极厚度下多孔电极的阻抗谱表征

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摘要

To understand the relationship between the specific energy and power of lithium (Li)-ion batteries, the dependence of the internal resistance of porous electrodes with high loading weight on thickness was systematically investigated. The ionic resistance in pores (R-ion) and charge-transfer resistance for Li intercalation (R-ct) normalized per unit electrode geometric area were assessed using a combination of electrochemical impedance spectroscopy with symmetric cells and the transmission line model for cylindrical pores. The changes of R-ion and R-ct and their magnitude show opposite trends with respect to electrode thickness. For thin electrodes, R-ion is lower than R-ct. The specific power decreases slightly as the electrodes become thicker because the total internal resistance is predominantly affected by the charge-transfer resistance, and there is no delay of the response in the depth direction. In contrast, for thick electrodes, R-ion is higher than or approximately equal to R-ct, so there is a delay of the reaction in the depth direction. As a result, the power of the battery is dramatically reduced because the total internal resistance is strongly influenced by both R-ion and R-ct.
机译:为了了解锂(Li)离子电池的比能量与功率之间的关系,系统地研究了高负载重量的多孔电极的内部电阻对厚度的依赖性。结合使用对称池的电化学阻抗谱和圆柱孔的传输线模型,评估了每单位电极几何面积上归一化的Li插层的孔中离子电阻(R-ion)和电荷转移电阻(R-ct)。关于电极厚度,R离子和R-ct的变化及其幅度显示出相反的趋势。对于薄电极,R离子低于R-ct。当电极变厚时,比功率会略有降低,因为总内部电阻主要受电荷转移电阻的影响,并且在深度方向上没有响应延迟。相反,对于厚电极,R-离子高于或近似等于R-ct,因此在深度方向上存在反应延迟。结果,由于总内部电阻受R离子和R-ct的强烈影响,电池的功率大大降低。

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