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Approaching high-performance potassium-ion batteries via advanced design strategies and engineering

机译:通过先进的设计策略和工程技术来接近高性能钾离子电池

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摘要

Potassium-ion batteries (PIBs) have attracted tremendous attention due to their low cost, fast ionic conductivity in electrolyte, and high operating voltage. Research on PIBs is still in its infancy, however, and achieving a general understanding of the drawbacks of each component and proposing research strategies for overcoming these problems are crucial for the exploration of suitable electrode materials/electrolytes and the establishment of electrode/cell assembly technologies for further development of PIBs. In this review, we summarize our current understanding in this field, classify and highlight the design strategies for addressing the key issues in the research on PIBs, and propose possible pathways for the future development of PIBs toward practical applications. The strategies and perspectives summarized in this review aim to provide practical guidance for an increasing number of researchers to explore next-generation and high-performance PIBs, and the methodology may also be applicable to developing other energy storage systems.
机译:钾离子电池(PIB)由于其低成本,电解质中快速的离子电导率和高工作电压而备受关注。然而,对PIB的研究仍处于起步阶段,对每种组分的缺点有一个普遍的了解并提出克服这些问题的研究策略对于探索合适的电极材料/电解质和建立电极/电池组装技术至关重要。用于进一步开发PIB。在这篇综述中,我们总结了我们在该领域的当前理解,分类并重点介绍了解决PIB研究中关键问题的设计策略,并提出了PIB未来向实际应用发展的可能途径。本文中概述的策略和观点旨在为越来越多的研究人员探索下一代高性能PIB提供实用指导,该方法也可能适用于开发其他储能系统。

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