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Electrolytes - Technology Review

机译:电解质 - 技术评论

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摘要

Safety, lifetime, energy density, and costs are the key factors for battery development. This generates the need for improved cell chemistries and new, advanced battery materials. The components of an electrolyte are the solvent, in which a conducting salt and additives are dissolved. Each of them plays a specific role in the overall mechanism of a cell: the solvent provides the host medium for ionic conductivity, which originates in the conductive salt. Furthermore, additives can be used to optimize safety, performance, and cyclability. By understanding the tasks of the individual components and their optimum conditions of operation, the functionality of cells can be improved from a holistic point of view. This paper will present the most important technological features and requirements for electrolytes in lithium-ion batteries. The state-of-the-art chemistry of each component is presented, as well as different approaches for their modification. Finally, a comparison of Li-cells with lithium-based technologies currently under development is conducted.
机译:安全性,寿命,能量密度和成本是电池开发的关键因素。这产生了改进的细胞化学品和新的先进电池材料的需求。电解质的组分是溶剂,其中溶解导电盐和添加剂。它们中的每一个在细胞的整体机制中起特定的作用:溶剂提供离子电导率的宿主介质,其源于导电盐。此外,添加剂可用于优化安全性,性能和可控性。通过理解各个组分的任务及其最佳操作条件,可以从整体角度提高细胞的功能。本文将为锂离子电池中的电解质提供最重要的技术特征和要求。提出了每个组分的最先进的化学,以及改变的不同方法。最后,对目前正在开发的基于锂基技术的Li-Cells进行比较。

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