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A dipole-driven crystal sieve for crystal plane regulation via trace electrolyte additive towards stable and highly reversible zinc anodes

delete2026-05-08
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PRE
AI
Y
Yuting Xu
Y
Yu Li
Y
Yirong Zhu *
R
Rui Zhao
W
Wenhao Chen
G
Guoqiang Zou
H
Hongshuai Hou
X
Xiaobo Ji *
DOI:10.1016/j.nanoen.2026.112016delete
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Abstract

Abstract

En 中文
• The dipole-driven crystal sieve strategy is proposed by introducing a novel trace MA additive. • The bifunctional synergy of crystal-plane-anchoring and ion-repelling groups achieves directional zinc deposition. • The Zn//Zn symmetric cell displays ultralong stability (6000 h@0.25 mA cm−2, 1100 h@10 mA cm−2). • The Zn//Cu asymmetric cell exhibits high reversibility with a coulombic efficiency of 99.8% after 5000 cycles. • The MnS//Zn ZIBs and MXene//Zn ZICs both deliver splendid cyclic stability.
Keywords:
dipole-driven crystal sieve
crystal plane regulation
zinc anode
electrolyte additive
reversible deposition

Journal

Nano Energy cover
Nano Energy
IF:
17.1
Papers:
1.1W
Citations:
13.0W

Organization

C
central south university
Scholars:
1.7W
Papers: 5.0K
Citations: 3
H
hunan university of technology
Scholars:
644
Papers: 204
Citations: 1
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