Affiliation:
1. National & Local Joint Engineering Laboratory of New Energy Photoelectric Devices College of Physics Science and Technology Hebei University Baoding 071002 P. R. China
2. School of Chemistry Chemical Engineering and Life Science and State Key Laboratory of Advanced Technology for Materials Synthesis and Processing Wuhan University of Technology Wuhan 430070 P. R. China
Abstract
AbstractUncontrolled growth of Zn dendrites hinders the future development of aqueous Zn‐ion batteries. Despite that the (100) plane possesses better zincophilic ability and fast kinetics, dendrites are generally suppressed via (002) plane‐oriented Zn deposition in previous reports; the ordered (100) plane‐dominant Zn deposition, especially under high current density has not yet been realized. Herein, vertically‐oriented Zn plating with preferential growth of (100) plane is reported using disodium lauryl phosphate (DLP) as an electrolyte additive. DLP is preferentially anchored on the Zn (002) crystal plane via the polar phosphate group, then the deposition of Zn atoms on the (002) plane is retarded by the long alkyl chain, finally promoting the preferred growth of the (100) plane. This unique growth pattern results in ultrastable Zn plating/stripping at a super‐high current density of 50 mA cm−2, with a cumulative capacity of 8500 mAh cm−2. The Zn//Zn symmetric cell also cycles steadily for 700 h with a large areal capacity of 10 mAh cm−2 at a current density of 10 mA cm−2. This study provides new insights into the realization of dendrite‐free Zn anodes by crystal plane modulation.
Funder
National Natural Science Foundation of China
Fundamental Research Funds for the Central Universities
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Cited by
27 articles.
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