材料科学
锂(药物)
介电谱
阴极
阳极
锂钴氧化物
电化学
氧化钴
多物理
电极
分析化学(期刊)
氧化物
锂离子电池
化学工程
热力学
化学
冶金
物理化学
电池(电)
物理
功率(物理)
色谱法
内分泌学
医学
有限元法
工程类
作者
Serena Carelli,Michael Quarti,Mehmet C. Yagci,Wolfgang G. Bessler
摘要
This article presents the development, parameterization, and experimental validation of a pseudo-three-dimensional (P3D) multiphysics model of a 350 mAh high-power lithium-ion pouch cell with graphite anode and lithium cobalt oxide/lithium nickel cobalt aluminum oxide (LCO/NCA) blend cathode. The model describes transport processes on three different scales: Heat transport on the macroscopic scale (cell), mass and charge transport on the mesoscopic scale (electrode pair), and mass transport on the microscopic scale (active material particles). A generalized description of electrochemistry in blend electrodes is developed, using the open-source software Cantera for calculating species source terms. Very good agreement of model predictions with galvanostatic charge/discharge measurements, electrochemical impedance spectroscopy, and surface temperature measurements is observed over a wide range of operating conditions (0.05C to 10C charge and discharge, 5°C to 35°C). The behavior of internal states (concentrations, potentials, temperatures) is discussed. The blend materials show a complex behavior with both intra-particle and inter-particle non-equilibria during cycling.
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