School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300072, P. R. China.
School of Science, Tianjin University, Tianjin, 300072, P. R. China.
ChemSusChem. 2020 Jan 9;13(1):188-195. doi: 10.1002/cssc.201902697. Epub 2019 Dec 5.
The rapid development of aqueous zinc-ion batteries poses a challenge for the exploration of cathode materials with high capacity and long cycle life. Organic materials are considered an appropriate choice owing to their structural flexibility and tunable surface chemistry. However, most organic cathode materials still have some shortcomings, such as low electrical conductivity, high cost, and limited cycling durability. Here, a facile synthesis of a novel organic composite cathode composed of cross-conjugated polycatechol (PC) combined with graphene (PC/G) is reported. The PC/G cathode is used for aqueous zinc-ion storage, wherein many hydroxy groups in the PC/G composite cathode can be converted into redox-active carbonyl groups at the initial discharge-charge. This composite cathode can deliver a high specific capacity of 355 mAh g at 0.1 C and a specific capacity of 171 mAh g at 10 C. Moreover, the composite cathode can retain 74.4 % of its initial capacity after 3000 discharge-charge cycles at 2 C. This coordination route to zinc ions within the PC/G composite cathode can avoid the destruction of the cathode material during discharge-charge. This organic cathode shows great promise for reversible zinc-ion storage, bringing aqueous zinc-ion batteries a step closer to future practical applications.
水锌离子电池的快速发展对探索具有高容量和长循环寿命的阴极材料提出了挑战。有机材料由于其结构灵活性和可调表面化学而被认为是一种合适的选择。然而,大多数有机阴极材料仍然存在一些缺点,例如电导率低、成本高和循环耐久性有限。在这里,报道了一种由交联聚邻苯二酚(PC)与石墨烯(PC/G)复合的新型有机复合阴极的简便合成方法。PC/G 阴极用于水系锌离子存储,其中 PC/G 复合阴极中的许多羟基在初始充放电过程中可转化为氧化还原活性羰基。这种复合阴极在 0.1 C 时可提供 355 mAh g 的高比容量,在 10 C 时可提供 171 mAh g 的比容量。此外,该复合阴极在 2 C 下经过 3000 次充放电循环后仍能保持其初始容量的 74.4%。这种在 PC/G 复合阴极中与锌离子的配位途径可以避免阴极材料在充放电过程中的破坏。这种有机阴极在可逆锌离子存储方面显示出巨大的应用前景,使水系锌离子电池更接近未来的实际应用。