钠离子电池高能电极材料研究进展

Muhammad Mamoor , Yi Li , Lu Wang , Zhongxin Jing , Bin Wang , Guangmeng Qu , Lingtong Kong , Yiyao Li , Zaiping Guo , Liqiang Xu
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引用次数: 1

摘要

商业应用中对钠离子电池(SIBs)的需求不断增长,满足商业需求势在必行。然而,与竞争对手锂离子电池(LIBs)相比,SIB由于其循环性差和可逆容量低而面临重大挑战。为了应对这些挑战,已经开发了各种技术、设计策略、表面工程和结构修饰来提高SIB的电化学性能。本文综述了近年来在提高新型有前途的SIBs电极材料的电化学性能和可循环性方面的进展。我们讨论了过去五年中几项独特的最先进的研究,这些研究通过有效的方法、表面调制和在结构中取代新元素,证明了优异的电化学性能,并提高了材料的效率。此外,我们建议在设计SIB时采用细致入微的方法是很重要的。与其复制LIB使用的设计和方法,不如从中吸收思想,并根据SIB的具体要求定制方法。这将有助于开发针对其预期应用进行优化的系统重要性银行,并将避免阻碍早期构建系统重要性银行的商业成功的挑战。因此,创建高性能SIB的关键是从LIB中使用的最佳实践中汲取灵感,同时创新和开发适合SIB独特特征的新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent progress on advanced high energy electrode materials for sodium ion batteries

The growing demand for sodium-ion batteries (SIBs) in commercial applications has made it imperative to meet the commercial requirements. However, SIBs face significant challenges because of their poor cyclability and low reversible capacity compared with their rival lithium-ion batteries (LIBs). To address these challenges, various techniques, design strategies, surface engineering, and structural modifications have been developed to enhance the electrochemical performance of SIBs. This review focuses on recent developments in improving the electrochemical performance and cyclability of novel promising electrode materials for SIBs. We discuss several unique state-of-the-art research studies of the past five years that demonstrated excellent electrochemical performance through effective methodologies, surface modulations, and substitution of novel elements into the structure, and boosted the efficiency of the materials. Furthermore, we propose that it is important to adopt a nuanced approach when designing SIBs. Rather than copying the designs and methods used for LIBs, ideas should be absorbed from them and approaches should be tailored to meet the specific requirements of SIBs. This will enable the development of SIBs that are optimized for their intended applications and will avoid the challenges that have hindered the commercial success of earlier attempts at constructing SIBs. Thus, the key to creating high-performance SIBs is to draw inspiration from the best practices used in LIBs, while simultaneously innovating and developing new approaches tailored to the unique characteristics of SIBs.

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