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Thermodynamic investigations of copper oxides used as conversion type electrodes in lithium ion batteries

机译:锂离子电池中用作转换型电极的氧化铜的热力学研究

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摘要

Copper oxides, which exhibit the conversion mechanism with lithium during electrochemical cycling, are promising electrode materials for next-generation lithium ion batteries. To better understand phase formations and equilibria in the Li-Cu-O system, the LiCu_2O_2 phase was synthesized using the solid-state method and characterized with X-ray powder diffraction technique and Rietveld analysis as well as inductively coupled plasma - optical emission spectrometry (ICP-OES). The phase stabilities in argon atmosphere and in a mixture of argon and oxygen were determined between 200 and 900 C and between 200 and 950 C, respectively. Based on this data as well as on other literature data, a thermodynamic description of the Li-Cu-O system valid in the battery relevant temperature regime was developed using the CALPHAD method. From this thermodynamic description, titration curves for CuO and Cu_2O cathodes, which give the equilibrium cell voltage as a function of lithium content along a selected composition path, were calculated at different temperatures.
机译:在电化学循环过程中表现出与锂的转化机理的铜氧化物是用于下一代锂离子电池的有希望的电极材料。为了更好地了解Li-Cu-O系统中的相形成和平衡,使用固态方法合成了LiCu_2O_2相,并通过X射线粉末衍射技术和Rietveld分析以及电感耦合等离子体发射光谱法对其进行了表征( ICP-OES)。在氩气气氛中以及在氩气和氧气的混合物中的相稳定性分别在200至900℃和200至950℃之间确定。基于此数据以及其他文献数据,使用CALPHAD方法开发了在电池相关温度范围内有效的Li-Cu-O系统的热力学描述。根据该热力学描述,在不同温度下计算出了沿选定的组成路径得出的平衡电池电压与锂含量的函数关系的CuO和Cu_2O阴极的滴定曲线。

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