Nimkar Amey, Bergman Gil, Ballas Elad, Tubul Nophar, Levi Noam, Malchik Fyodor, Kukurayeve Idan, Chae Munseok S, Sharon Daniel, Levi Mikhael, Shpigel Netanel, Wang Guoxiu, Aurbach Doron
Department of Chemistry and BINA-, BIU Centre for Nanotechnology and Advanced Materials, Bar Ilan University, Ramat Gan, 5290002, Israel.
Center of Physical-Chemical Methods of Research and Analysis, al-Farabi Kazakh National University, Almaty, 050012, Kazakhstan.
Angew Chem Int Ed Engl. 2023 Dec 11;62(50):e202306904. doi: 10.1002/anie.202306904. Epub 2023 Sep 25.
The exploration of cathode and anode materials that enable reversible storage of mono and multivalent cations has driven extensive research on organic compounds. In this regard, polyimide (PI)-based electrodes have emerged as a promising avenue for the development of post-lithium energy storage systems. This review article provides a comprehensive summary of the syntheses, characterizations, and applications of PI compounds as electrode materials capable of hosting a wide range of cations. Furthermore, the review also delves into the advancements in PI based solid state batteries, PI-based separators, current collectors, and their effectiveness as polymeric binders. By highlighting the key findings in these areas, this review aims at contributing to the understanding and advancement of PI-based structures paving the way for the next generation of energy storage systems.
对能够实现单、多价阳离子可逆存储的阴极和阳极材料的探索推动了对有机化合物的广泛研究。在这方面,基于聚酰亚胺(PI)的电极已成为后锂储能系统发展的一条有前景的途径。这篇综述文章全面总结了PI化合物作为能够容纳多种阳离子的电极材料的合成、表征及应用。此外,该综述还深入探讨了基于PI的固态电池、PI基隔膜、集流体的进展以及它们作为聚合物粘合剂的有效性。通过强调这些领域的关键发现,本综述旨在促进对基于PI的结构的理解和发展,为下一代储能系统铺平道路。