Bommier Clement, Ji Xiulei
Department of Chemistry, Oregon State University, Corvallis, OR, 97331-4003, USA.
Small. 2018 Apr;14(16):e1703576. doi: 10.1002/smll.201703576. Epub 2018 Jan 22.
Through intense effort in recent years, knowledge of Na-ion batteries has been advanced significantly, pertaining to electrodes. Often, such progress has been accompanied by using a convenient choice of electrolyte or binder. Nevertheless, it has been witnessed that "external" factors to electrodes, such as electrolytes, solid electrolyte interphase, and binders, affect the functions of electrodes profoundly. And generally, certain types of electrodes favor some electrolytes or binders. With a rapidly increasing number of publications in the area, trends in terms of electrolytes and binders are possibly exploitable. Unfortunately, the field has yet to see a review article that devotes itself to these nonelectrode aspects of Na-ion batteries. Here, the gap is filled by conducting a comprehensive review of these nonelectrode external factors, especially by looking into their correlation with electrochemical properties, such as cycle life, and first cycle coulombic efficiency. Not only are the representative reports reviewed, but also quantitative analyses on the database that are constructed are provided. With such analyses, some new data-driven perspectives are postulated, which are of great value to the community.
近年来,通过不懈努力,钠离子电池在电极方面的知识取得了显著进展。通常,这种进展伴随着对电解质或粘结剂的便利选择。然而,已经发现电极的“外部”因素,如电解质、固体电解质界面和粘结剂,会深刻影响电极的功能。一般来说,某些类型的电极更适合某些电解质或粘结剂。随着该领域出版物数量的迅速增加,电解质和粘结剂方面的趋势可能是可利用的。不幸的是,该领域尚未出现一篇专门针对钠离子电池这些非电极方面的综述文章。在此,通过对这些非电极外部因素进行全面综述来填补这一空白,特别是通过研究它们与电化学性能(如循环寿命和首次循环库仑效率)的相关性。不仅对代表性报告进行了综述,还提供了对所构建数据库的定量分析。通过这些分析,提出了一些新的数据驱动观点,对该领域具有重要价值。