Ding Liyan, Gao Jiechang, Yan Tianran, Cheng Chen, Chang Lo-Yueh, Zhang Nian, Feng Xuefei, Zhang Liang
Institute of Functional Nano & Soft Materials (FUNSOM), Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices, Soochow University, 199 Ren'ai Road, Suzhou 215123, Jiangsu, China.
National Synchrotron Radiation Research Center, Hsinchu 30076, Taiwan.
ACS Appl Mater Interfaces. 2022 Apr 20;14(15):17570-17577. doi: 10.1021/acsami.2c03170. Epub 2022 Apr 7.
Rechargeable aqueous zinc-ion batteries (AZIBs) are close complements to lithium-ion batteries for next-generation grid-scale applications owing to their high specific capacity, low cost, and intrinsic safety. Nevertheless, the viable cathode materials (especially manganese oxides) of AZIBs suffer from poor conductivity and inferior structural stability upon cycling, thereby impeding their practical applications. Herein, a facile synthetic strategy of bead-like manganese oxide coated with carbon nanofibers (MnO-CNFs) based on electrospinning is reported, which can effectively improve the electron/ion diffusion kinetics and provide robust structural stability. These benefits of MnO-CNFs are evident in the electrochemical performance metrics, with a long cycling durability (i.e., a capacity retention of 90.6% after 2000 cycles and 71% after 5000 cycles) and an excellent rate capability. Furthermore, the simultaneous insertion of H/Zn and the Mn redox process at the surface and in the bulk of MnO-CNFs are clarified in detail. Our present study not only provides a simple avenue for synthesizing high-performance Mn-based cathode materials but also offers unique knowledge on understanding the corresponding electrochemical reaction mechanism for AZIBs.
可充电水系锌离子电池(AZIBs)因其高比容量、低成本和本质安全性,是下一代电网规模应用中锂离子电池的紧密补充。然而,AZIBs可行的阴极材料(尤其是锰氧化物)存在导电性差和循环时结构稳定性较差的问题,从而阻碍了它们的实际应用。在此,报道了一种基于静电纺丝的涂覆有碳纳米纤维的珠状锰氧化物(MnO-CNFs)的简便合成策略,其可以有效地改善电子/离子扩散动力学并提供强大的结构稳定性。MnO-CNFs的这些优点在电化学性能指标中很明显,具有长循环耐久性(即2000次循环后容量保持率为90.6%,5000次循环后为71%)和优异的倍率性能。此外,还详细阐明了H/Zn在MnO-CNFs表面和本体中的同时插入以及Mn的氧化还原过程。我们目前的研究不仅为合成高性能Mn基阴极材料提供了一条简单途径,而且还为理解AZIBs相应的电化学反应机理提供了独特的知识。