» Articles » PMID: 37820045

Polymer Coating with Balanced Coordination Strength and Ion Conductivity for Dendrite-Free Zinc Anode

Overview
Journal Adv Mater
Date 2023 Oct 11
PMID 37820045
Authors
Affiliations
Soon will be listed here.
Abstract

Decorating Zn anodes with functionalized polymers is considered as an effective strategy to inhibit dendrite growth. However, this normally brings extra interfacial resistance rendering slow reaction kinetics of Zn . Herein, a poly(2-vinylpyridine) (P2VP) coating with modulated coordination strength and ion conductivity for dendrite-free Zn anode is reported. The P2VP coating favors a high electrolyte wettability and rapid Zn migration speed (Zn transfer number, t = 0.58). Electrostatic potential calculation shows that P2VP mildly coordinates with Zn (adsorption energy = -0.94 eV), which promotes a preferential deposition of Zn along the (002) crystal plane. Notably, the use of partially (26%) quaternized P2VP (q-P2VP) further reduces the interfacial resistance to 126 Ω, leading to a high ion migration speed (t = 0.78) and a considerably low nucleation overpotential (18 mV). As a result of the synergistic effect of mild coordination and partial electrolysis, the overpotential of the q-P2VP-decorated Zn anode retains at a considerably low level (≈46 mV) over 1000 h at a high current density of 10 mA cm . The assembled (NH ) V O ·1.5H O || glass fiber || q-P2VP-Zn full cell reveals a lower average capacity decay rate of only 0.018% per cycle within 500 cycles at 1 A g .

Citing Articles

Self-assembled polyelectrolytes with ion-separation accelerating channels for highly stable Zn-ion batteries.

Hu X, Dong H, Gao N, Wang T, He H, Gao X Nat Commun. 2025; 16(1):2316.

PMID: 40057473 PMC: 11890744. DOI: 10.1038/s41467-025-57666-0.


Interface regulation and electrolyte design strategies for zinc anodes in high-performance zinc metal batteries.

Guo X, Zhang S, Hong H, Wang S, Zhu J, Zhi C iScience. 2025; 28(2):111751.

PMID: 39906556 PMC: 11791299. DOI: 10.1016/j.isci.2025.111751.


All-natural charge gradient interface for sustainable seawater zinc batteries.

Fan W, Zhu C, Wang X, Wang H, Zhu Y, Chen J Nat Commun. 2025; 16(1):1273.

PMID: 39894852 PMC: 11788429. DOI: 10.1038/s41467-025-56519-0.


Irradiating the Path to High-Efficiency Zn-Ion Batteries: An Electrochemical Analysis of Laser-Modified Anodes.

Durena R, Fedorenko L, Griscenko N, Vanags M, Orlova L, Onufrijevs P Glob Chall. 2024; 8(10):2400105.

PMID: 39398527 PMC: 11469777. DOI: 10.1002/gch2.202400105.