Deng Wenjun, Li Zhengang, Chen Yan, Shen Na, Zhang Man, Yuan Xinran, Hu Jun, Zhu Jinlin, Huang Chao, Li Chang, Li Rui
School of Advanced Materials, Peking University Shenzhen Graduate School, Shenzhen 518055, China.
ACS Appl Mater Interfaces. 2022 Aug 10;14(31):35864-35872. doi: 10.1021/acsami.2c09993. Epub 2022 Jul 28.
Prussian blue analogues (PBAs) as a promising high-voltage cathode material for aqueous zinc-ion batteries (ZIBs) are usually subjected to an ephemeral lifespan and low Coulombic efficiency due to the irreversible phase change and high Zn insertion potential. Besides, Zn dendrites, H evolution reaction, and corrosion derived from a Zn anode interface remain huge challenges. Given this, a highly stable zinc hexacyanoferrate (KZnHCF) cathode together with a mixed concentrated electrolyte is prepared to realize a high-voltage and long-life aqueous ZIB, in which the mixed concentrated electrolyte consisting of 30 m KFSI + 1 m Zn(CFSO) possesses a unique Zn solvation sheath (Zn(CFSO)(FSI)(HO)) that can not only stabilize the cathode interface and improve the Coulombic efficiency but also fundamentally solve the Zn anode interface issues. As a result, the aqueous KZnHCF/Zn battery achieves an ultralong life over 3000 cycles without any capacity decay even under a high discharge voltage of 1.78 V (vs Zn/Zn). Such extraordinary performance represents significant progress in aqueous PBA-based ZIBs. This work shares guidance to improve the performance of aqueous ZIBs through optimizing the electrolyte in tuning the stable operation of the cathode and the zinc anode.
普鲁士蓝类似物(PBAs)作为水系锌离子电池(ZIBs)一种很有前景的高压正极材料,由于不可逆的相变和较高的锌嵌入电位,其寿命通常较短,库仑效率较低。此外,锌枝晶、析氢反应以及锌阳极界面产生的腐蚀仍然是巨大的挑战。鉴于此,制备了一种高度稳定的六氰合铁酸锌钾(KZnHCF)正极和一种混合浓缩电解质,以实现高压长寿命水系ZIB,其中由30 m KFSI + 1 m Zn(CFSO)组成的混合浓缩电解质具有独特的锌溶剂化鞘层(Zn(CFSO)(FSI)(H₂O)),不仅可以稳定正极界面并提高库仑效率,还能从根本上解决锌阳极界面问题。结果,水系KZnHCF/Zn电池实现了超过3000次循环的超长寿命,即使在1.78 V(相对于Zn/Zn)的高放电电压下也没有任何容量衰减。这种卓越的性能代表了水系基于PBA的ZIBs取得的重大进展。这项工作为通过优化电解质来调整正极和锌阳极的稳定运行以提高水系ZIBs的性能提供了指导。