材料科学
成核
阳极
阴极
箔法
锌
化学工程
纳米片
多孔性
图层(电子)
电解质
极化(电化学)
电偶阳极
水溶液
纳米技术
复合材料
冶金
阴极保护
物理化学
有机化学
化学
工程类
电极
作者
Ruiting Guo,Xiong Liu,Fanjie Xia,Yalong Jiang,Huazhang Zhang,Meng Huang,Chaojiang Niu,Jinsong Wu,Yan Zhao,Xuanpeng Wang,Chunhua Han,Liqiang Mai
标识
DOI:10.1002/adma.202202188
摘要
Uneven distribution of electric fields at the electrolyte-anode interface and associated Zn dendrite growth is one of the most critical barriers that limit the life span of aqueous zinc-ion batteries. Herein, new-type Zn-A-O (A = Si, Ti) interface layers with thin and uniform thickness, porosity, and hydrophilicity properties are developed to realize homogeneous and smooth Zn plating. For ZnSiO3 nanosheet arrays on Zn foil (Zn@ZSO), their formation follows an "etching-nucleation-growth" mechanism that is confirmed by a well-designed Zn-island-based identical-location microscopy method, the geometric area of which is up to 1000 cm2 in one-pot synthesis based on a low-temperature wet-chemical method. Guided by the structural advantages of the ZSO layer, the Zn2+ flux gets equalized. Besides ultralow polarization, the life spans of symmetric cells and full cells coupled with a high-mass-loading K0.27 MnO2 ·0.54H2 O (8 mg cm-2 ) cathode, are increased by 3-7 times with the Zn@ZSO anode. Moreover, the large-scale preparation of Zn@ZSO foil contributes to a 0.5 Ah multilayer pouch cell with high performance, further confirming its prospects for practical application.
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