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Current trends and future challenges of electrolytes for sodium-ion batteries

机译:钠离子电池电解液的当前趋势和未来挑战

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Research and development efforts on sodium-ion batteries are gaining momentum due to their potential to accommodate high energy density coupled with relatively lower cost in comparison with lithium-ion batteries. In order for the sodium-ion batteries to be commercially viable, high performance electrolytes with acceptable ambient temperature ionic conductivity and wider electrochemical stability windows are being developed. A bibliometric analysis of the publications on various types of Na+ ion conducting electrolytes since 1990 shows a total of 200 + publications and reveals an exponential growth in the last few years, due to reasons that the sodium-ion systems promise great potential as the future large scale power sources for variety of applications. This review consolidates the status of liquid (non-aqueous, aqueous and ionic), polymer gel and solid (ceramics, glasses, and solid polymers) electrolytes and discusses their ionic conductivity, thermal characteristics, electrochemical stability and viscosity towards applications in sodium-ion batteries. Among various types available, the non-aqueous solvent based electrolyte is the most promising one in terms of ionic conductivity even though it is flammable. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:由于钠离子电池具有适应高能量密度且与锂离子电池相比成本相对较低的潜力,因此其研究与开发工作正获得动力。为了使钠离子电池在商业上可行,正在开发具有可接受的环境温度离子电导率和更宽的电化学稳定性窗口的高性能电解质。自1990年以来对各种类型的Na +离子导电电解质的出版物进行的文献计量分析显示,总共有200+种出版物,并揭示了过去几年中的指数增长,这是由于钠离子系统有很大的发展潜力的原因。缩放电源以适应各种应用。这篇综述巩固了液体(非水,水和离子),聚合物凝胶和固体(陶瓷,玻璃和固体聚合物)电解质的状态,并讨论了它们的离子传导性,热特性,电化学稳定性和粘度对在钠离子中的应用电池。在各种可用的类型中,就离子传导性而言,非水溶剂基电解质即使是易燃的,也是最有前途的一种。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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