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Study on evolution process and electrochemical behavior of porous cathode in discharge process of the solid-state lithium-oxygen battery

机译:固态锂氧电池放电过程中多孔阴极的演化过程及电化学行为研究

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? 2023 Elsevier LtdSolid-state lithium?oxygen battery is one of the lithium-metal batteries with high theoretical specific capacity and strong safety. In order to explore the evolution process and electrochemical behavior of the battery, a study of combination of simulation and experiment is conducted in this paper. Firstly, solid-state lithium?oxygen batteries with quartz tubes as the battery shell are designed for the experiment. FTIR and Raman results show that the lithium peroxide is produced as discharge products and SEM images show the product is accumulated on the surface of carbon particles and bound the carbon particles into blocks during the cathode evolution process. Then, a 1D multi-physics coupling field model referred to the experiment is established to investigate the electrochemical behavior of the battery. The calculated discharge curves are compared with the experimental discharge curves to verify the accuracy of the model. Using the model, the electrochemical behaviors, such as discharge product volume fraction, active three-phase interface, LATP phase potential and carbon phase potential, are analyzed. At last, the reasons for discharge termination are attributed to the accumulation of lithium peroxide and the decline of active three-phase interface.
机译:?2023 爱思唯尔有限公司固态锂氧电池是理论比容量高、安全性强的锂金属电池之一。为了探究电池的演化过程和电化学行为,本文采用仿真与实验相结合的方法进行研究。首先,为实验设计了以石英管为电池外壳的固态锂氧电池;傅里叶变换红外和拉曼结果表明,过氧化锂是以放电产物的形式产生的,SEM图像显示,过氧化锂在阴极演化过程中积累在碳颗粒表面,并将碳颗粒结合成块状。然后,建立参考实验的一维多物理场耦合场模型,研究电池的电化学行为。将计算得出的放电曲线与实验放电曲线进行对比,验证了模型的准确性。利用该模型分析了放电产物体积分数、有源三相界面、LATP相位电位和碳相电位等电化学行为。最后,放电终止的原因归因于过氧化锂的积累和活性三相界面的下降。

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