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Morphology and the Electrochemical Properties of Electrochemically Synthesized Binary Oxides Systems - Promising Cathode Materials for Lithium Chemical Power Sources

机译:电化学合成二元氧化物系统的形态学与电化学性能 - 锂化学动力源的有前途的阴极材料

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Multicomponent oxide systems of LiCo_xMn_yO, Mn_xV_yO5, Mn_xCrO_y and other types are considered as very promising for application as the active cathode substances for lithium secondary batteries. The relation of metal concentrations in oxides can change within wide ranges. In some cases the introduced quantity of doping metal does not exceed the percentage units. Production of mixed oxides is usually based on the methods of chemical-thermal synthesis from the stoichiometric mixtures of the appropriate metal salts. At the same time the electrochemical synthesis method of complex oxide systems is of essential interest.
机译:LiCo_XMN_YO,MN_V_YO5,MN_XCRO_Y和其他类型的多组分氧化物系统被认为是对应用作为锂二次电池的活性阴极物质的非常有前途。金属浓度在氧化物中的关系可以在宽范围内变化。在某些情况下,引入的掺杂金属的数量不超过百分比单位。混合氧化物的生产通常基于来自适当金属盐的化学计量混合物的化学热合成的方法。同时,复合氧化物系统的电化学合成方法是必不可少的兴趣。

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