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Highly conductive 90V2O5·10P2O5 nanocrystalline cathode materials for lithium-ion batteries

机译:用于锂离子电池的高导电90V205·10p205纳米晶体材料

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The aim of this research was to optimize process of nanocrystallization of vanadate-phosphate glasses in order to reach as high electronic conductivity as possible. 90V2O5·10P2O5 glasses were prepared by a standard melt-quenching technique under different synthesis conditions. The glass transition temperature, the crystallization temperature and the electric conductivity at RT is evidently correlated with the synthesis temperature. The samples were annealed at different temperatures. As a result of this optimization, a sample with σ(25 °C) = 0.7·10~(-1) S/cm was synthesized. The microstructure of the sample consists of V2O5 nanocrystallites with size within 15÷30 nm. The significant increase in the conductivity is discussed in terms of the Mott's model of electron hopping and a core-shell concept. The electrochemical measurements have shown that up to 3 moles of Li~+ ions can be inserted into 1 mole of V2O5.
机译:该研究的目的是优化钒酸磷酸盐玻璃的纳米晶化过程,以尽可能地达到高电子导电性。通过在不同的合成条件下通过标准熔体淬火技术制备90V2O5·10P2O5玻璃。在室温下,玻璃化转变温度,结晶温度和电导率明显与合成温度相关。样品在不同的温度下退火。作为该优化的结果,合成了具有σ(25℃)= 0.7·10〜(-1)S / cm的样品。样品的微观结构由V2O5纳米晶体组成,尺寸在15℃30nm内。就电子跳跃模型和核心壳概念而言,讨论了电导率的显着增加。电化学测量表明,高达3摩尔的Li +离子可以插入1摩尔V2O5中。

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