Cold‐Optimized Zinc‐Ion Batteries: Enhanced Stability at −5 °C

J Jianming Meng Y Yulai Lin (Department of Chemistry, College of Science) Y Yuqing Wang P Peng Hei (Department of Chemistry, College of Science) Y Ya Sai (Department of Chemistry, College of Science) J Jing Wang (Hunan Cancer Hospital Changsha China) X Xiaoqi Sun (Department of Chemistry, College of Science) X Xiao‐Xia Liu (Department of Chemistry Northeastern University 3‐11, Wenhua Road, Heping district Shenyang 110819 China) Y Yu Song (Department of Chemistry, College of Science)

Abstract

AbstractAqueous zinc‐ion batteries (AZIBs) have been extensively studied under room and ultralow temperature conditions. However, mechanism studies at intermediate temperature ranges remain limited. In this work, we investigate the electrochemical performance of an AZIB using a commonly employed 3 M ZnSO4 electrolyte across the intermediate temperature range of 25 to −15 °C. Notably, we find that the battery with a double hydroxide cathode exhibits optimized performance at −5 °C, demonstrating significantly enhanced cycling stability compared to 25 °C. Mechanistic studies reveal that unfavorable H+‐associated reactions at both the cathode and anode are effectively alleviated at −5 °C, contributing to improved cycling stability. Spectroscopic and theoretical analyzes show that changes in the electrolyte environment at −5 °C—such as reduced electrochemical activity of H2O, increased H‐bond strength, and decreased total number of H bonds—impede H+ diffusion through H‐bond network via the Grotthuss mechanism. These effects collectively suppress harmful H+‐associated reactions, allowing Zn2+ insertion/deinsertion to dominate the charge storage process. This work provides valuable insights into the enhanced performance of AZIBs at sublow temperatures and presents opportunities for extending battery operation in near‐freezing environments.

Article Details

Volume / Issue Vol. 64, Issue 23
Published June 02, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

J

Jianming Meng

Y

Yulai Lin

Department of Chemistry, College of Science

Y

Yuqing Wang

P

Peng Hei

Department of Chemistry, College of Science

Y

Ya Sai

Department of Chemistry, College of Science

J

Jing Wang

Hunan Cancer Hospital Changsha China

X

Xiaoqi Sun

Department of Chemistry, College of Science

X

Xiao‐Xia Liu

Department of Chemistry Northeastern University 3‐11, Wenhua Road, Heping district Shenyang 110819 China

Y

Yu Song

Department of Chemistry, College of Science