Zhang Qi, Luan Jingyi, Fu Liang, Wu Shengan, Tang Yougen, Ji Xiaobo, Wang Haiyan
Hunan Provincial Key Laboratory of Chemical Power Sources, College of Chemistry and Chemical Engineering, Central South University, Changsha, 410083, China.
Collaborative Innovation Center for Green Development in Wuling Mountain Areas, Yangtze Normal University, Fuling, 408100, China.
Angew Chem Int Ed Engl. 2019 Oct 28;58(44):15841-15847. doi: 10.1002/anie.201907830. Epub 2019 Sep 9.
Rechargeable aqueous zinc-ion batteries have been considered as a promising candidate for next-generation batteries. However, the formation of zinc dendrites are the most severe problems limiting their practical applications. To develop stable zinc metal anodes, a synergistic method is presented that combines the Cu-Zn solid solution interface on a copper mesh skeleton with good zinc affinity and a polyacrylamide electrolyte additive to modify the zinc anode, which can greatly reduce the overpotential of the zinc nucleation and increase the stability of zinc deposition. The as-prepared zinc anodes show a dendrite-free plating/stripping behavior over a wide range of current densities. The symmetric cell using this dendrite-free anode can be cycled for more than 280 h with a very low voltage hysteresis (93.1 mV) at a discharge depth of 80 %. The high capacity retention and low polarization are also realized in Zn/MnO full cells.
可充电水系锌离子电池被认为是下一代电池的一个有前途的候选者。然而,锌枝晶的形成是限制其实际应用的最严重问题。为了开发稳定的锌金属负极,提出了一种协同方法,该方法将具有良好锌亲和力的铜网骨架上的铜锌固溶体界面与聚丙烯酰胺电解质添加剂相结合来修饰锌负极,这可以大大降低锌成核的过电位并提高锌沉积的稳定性。所制备的锌负极在很宽的电流密度范围内表现出无枝晶的电镀/剥离行为。使用这种无枝晶负极的对称电池在80%的放电深度下可以循环超过280小时,具有非常低的电压滞后(93.1 mV)。在锌/二氧化锰全电池中也实现了高容量保持率和低极化。