Integrated Micro Space Electrostatic Field in Aqueous Zn‐Ion Battery: Scalable Electrospray Fabrication of Porous Crystalline Anode Coating

Author:

Guo Can1,Zhou Jie1,Chen Yuting1,Zhuang Huifen1,Li Jie1,Huang Jianlin1,Zhang Yuluan1,Chen Yifa1,Li Shun‐Li1,Lan Ya‐Qian1ORCID

Affiliation:

1. School of Chemistry South China Normal University Guangzhou 51 0006 P. R. China

Abstract

AbstractThe inhomogeneous consumption of anions and direct contact between electrolyte and anode during the Zn‐deposition process generate Zn‐dendrites and side reactions that can aggravate the space‐charge effect to hinder the practical implementation of zinc‐metal batteries (ZMBs). Herein, electrospray has been applied for the scalable fabrication (>10 000 cm2 in a batch‐experiment) of hetero‐metallic cluster covalent‐organic‐frameworks (MCOF‐Ti6Cu3) nanosheet‐coating (MNC) with integrated micro space electrostatic field for ZMBs anode protection. The MNC@Zn symmetric cell presents ultralow overpotential (≈72.8 mV) over 10 000 cycles at 1 mAh cm−2 with 20 mA cm−2, which is superior to bare Zn and state‐of‐the‐art porous crystalline materials. Theoretical calculations reveal that MNC with integrated micro space electrostatic field can facilitate the deposition‐kinetic and homogenize the electric field of anode to significantly promote the lifespan of ZMBs.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

General Chemistry,Catalysis

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