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Surface and interface sciences of Li-ion batteries-Research progress in electrode electrolyte interface-

机译:锂离子电池的表面和界面科学 - 电极电解质接口中的研究进展 -

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摘要

The application potential of Li-ion batteries is growing as demand increases in different fields at various stages in energy systems, in addition to their conventional role as power sources for portable devices. In particular, applications in electric vehicles and renewable energy storage are increasing for Li-ion batteries. For these applications, improvements in battery performance are necessary. The Li-ion battery produces and stores electric power from the electrochemical redox reactions between the electrode materials. The interface between the electrodes and electrolyte strongly affects the battery performance because the charge transfer causing the electrode redox reaction begins at this interface. Understanding of the surface structure, electronic structure, and chemical reactions at the electrode electrolyte interface is necessary to improve battery performance. However, the interface is located between the electrode and electrolyte materials, hindering the experimental analysis of the interface; thus, the physical properties and chemical processes have remained poorly understood until recently. Investigations of the physical properties and chemical processes at the interface have been performed using advanced surface science techniques. In this review, current knowledge and future research prospects regarding the electrode electrolyte interface are described for the further development of Li-ion batteries.
机译:除了作为便携式设备的电源的传统作用之外,锂离子电池的应用势越来越多地增长。特别是,对于锂离子电池,电动车辆和可再生能量存储中的应用正在增加。对于这些应用,需要改进电池性能。锂离子电池从电极材料之间的电化学氧化还原反应产生并存储电力。电极和电解质之间的界面强烈影响电池性能,因为引起电极氧化还原反应的电荷转移在该界面开始。需要了解电极电解质接口的表面结构,电子结构和化学反应,以提高电池性能。然而,界面位于电极和电解质材料之间,阻碍了界面的实验分析;因此,直到最近,物理性质和化学过程仍然很差。使用先进的表面科学技术进行了对界面处的物理性质和化学过程的研究。在本次审查中,描述了关于电极电解质界面的当前知识和未来的研究前景,用于进一步开发Li离子电池。

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