Stable Zn Metal Anodes Enabled by Restricted Self‐Diffusion Via Succinimide Surfactant

Author:

Wang Haoliang1,Du Haoran1,Zhao Ruirui1,Zhu Zhenglu1,Qie Long2ORCID,Fu Jing1ORCID,Huang Yunhui2ORCID

Affiliation:

1. Shanghai Key Laboratory of Development & Application for Metallic Functional Materials School of Materials Science and Engineering Tongji University Shanghai 201804 China

2. State Key Laboratory of Material Processing and Die & Mold Technology School of Materials Science and Engineering Huazhong University of Science and Technology Wuhan 430074 China

Abstract

AbstractDespite its merits of high specific capacity and intrinsic safety for aqueous zinc‐ion batteries (AZIBs), Zn metal as anode suffers from dendritic growth and severe corrosion during battery operation. Here, an electrolyte surfactant of succinimide (SI) that occupies the compact region of the electrical double layer (EDL) at the Zn/electrolyte interface, which protects the Zn surface from the parasitic corrosion in aqueous electrolytes is reported. More importantly, both theoretical calculation and electrochemical analysis demonstrate that the occupation of SI at the EDL can restrict the self‐diffusion of Zn adatoms and tune interfacial reaction kinetics during Zn deposition, thereby promoting small and dense nuclei rather than large Zn dendrites. Accordingly, SI surfactants enable a high Coulombic efficiency of 99.95% and a long cumulative plated capacity over 6800 mAh cm−2at 20 mA cm−2for 10 mAh cm−2. Moreover, the feasibility of SI is also demonstrated on a long‐term cycling stability in Zn‐VS2batteries.

Funder

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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