Li Lei, Yin Yan-Jun, Hei Jin-Pei, Wan Xin-Jun, Li Ming-Ling, Cui Yong
School of Chemistry and Material Engineering, Chaohu University, Hefei, 238000, China.
School of Chemistry and Chemical Engineering, Frontiers Science Center for Transformative Molecules and State Key Laboratory of Metal Matrix Composites, Shanghai Jiao Tong University, Shanghai, 200240, China.
Small. 2021 Mar;17(10):e2005752. doi: 10.1002/smll.202005752. Epub 2021 Feb 5.
Aromatic imides are a class of attractive organic materials with inherently electroactive groups and large π electron-deficient scaffolds, which hold potential as electrode materials for organic secondary batteries (OSBs). However, the undecorated aromatic imides are usually plagued by low capacity, high solubility in electrolyte, and poor electronic/ionic conductivity. Molecular engineering has been demonstrated to be an effective strategy to address unsatisfying characteristics of the aromatic imides, thereby expanding their scope for applications in OSBs. In this review, the recent research progress in modulation of the capacity, dissolution, and electronic/ionic conductivity of aromatic imides for organic lithium batteries, organic sodium batteries, and redox flow batteries are summarized. In addition, the challenge and prospective of aromatic imides in organic secondary battery applications are also discussed.
芳香族酰亚胺是一类具有固有电活性基团和大的缺π电子骨架的有吸引力的有机材料,有望成为有机二次电池(OSB)的电极材料。然而,未修饰的芳香族酰亚胺通常存在容量低、在电解质中溶解度高以及电子/离子电导率差等问题。分子工程已被证明是解决芳香族酰亚胺令人不满意特性的有效策略,从而扩大了它们在有机二次电池中的应用范围。在这篇综述中,总结了芳香族酰亚胺在有机锂电池、有机钠电池和氧化还原液流电池中容量、溶解性以及电子/离子电导率调控方面的最新研究进展。此外,还讨论了芳香族酰亚胺在有机二次电池应用中的挑战和前景。