» Articles » PMID: 35191602

Electrolyte Engineering Enables High Performance Zinc-Ion Batteries

Overview
Journal Small
Date 2022 Feb 22
PMID 35191602
Authors
Affiliations
Soon will be listed here.
Abstract

Zinc-ion batteries (ZIBs) feature high safety, low cost, environmental-friendliness, and promising electrochemical performance, and are therefore regarded as a potential technology to be applied in large-scale energy storage devices. However, ZIBs still face some critical challenges and bottlenecks. The electrolyte is an essential component of batteries and its properties affect the mass transport, energy storage mechanisms, reaction kinetics, and side reactions of ZIBs. The adjustment of electrolyte formulas usually has direct and obvious impacts on the overall output and performance. In this review, advanced electrolyte strategies are overviewed for optimizing the compatibility between cathode materials and electrolytes, inhibiting anode corrosion and dendrite growth, extending electrochemical stability windows, enabling wearable applications, and enhancing temperature tolerance. The underlying scientific mechanisms, electrolyte design principles, and recent progress are presented to provide a better understanding and inspiration to readers. In addition, a comprehensive perspective about electrolyte design and engineering for ZIBs is included.

Citing Articles

Dissolution, solvation and diffusion in low-temperature zinc electrolyte design.

Dong Y, Hu H, Liang P, Xue L, Chai X, Liu F Nat Rev Chem. 2025; 9(2):102-117.

PMID: 39775526 DOI: 10.1038/s41570-024-00670-7.


Cutting-Edge Progress in Aqueous Zn-S Batteries: Innovations in Cathodes, Electrolytes, and Mediators.

Liang T, Zhang X, Huang Y, Lu Y, Jia H, Yuan Y Small. 2024; 21(7):e2405810.

PMID: 39363800 PMC: 11840471. DOI: 10.1002/smll.202405810.


Screening Ammonium-Based Cationic Additives to Regulate Interfacial Chemistry for Aqueous Ultra-Stable Zn Metal Anode.

Zheng L, Li H, Gao M, Huang K, Wang J, Su L Adv Sci (Weinh). 2024; 11(43):e2407102.

PMID: 39340834 PMC: 11578347. DOI: 10.1002/advs.202407102.


Breaking the trade-off between capacity and stability in vanadium-based zinc-ion batteries.

Jiang W, Zhu K, Xie W, Wang Z, Ou Z, Yang W Chem Sci. 2024; 15(7):2601-2611.

PMID: 38362413 PMC: 10866371. DOI: 10.1039/d3sc05726g.


Versatile MXenes for Aqueous Zinc Batteries.

Liu H, Xin Z, Cao B, Zhang B, Fan H, Guo S Adv Sci (Weinh). 2023; 11(8):e2305806.

PMID: 37985557 PMC: 10885665. DOI: 10.1002/advs.202305806.