Related Experiment Video
Updated: Aug 10, 2026

Synthesis of Ionic Liquid Based Electrolytes, Assembly of Li-ion Batteries, and Measurements of Performance at High Temperature
Published on: December 20, 2016
Regulating Solvation Chemistry via Strongly Coordinating Anion and Weakly Solvating Cosolvent for Low-Temperature
Genliang Yu1, Qian Yang1, Tongtong Huo1
1Tianjin Key Laboratory of Materials Laminating Fabrication and Interface Control Technology, School of Materials Science and Engineering, Hebei University of Technology, Tianjin, China.
Abstract:
Sodium metal batteries (SMBs) hold great promise for next-generation energy storage systems due to their abundant sodium resources, high theoretical specific capacity, and low redox potential. However, they suffer from rapid capacity degradation at low operating temperatures, which inevitably hinders their practical application. In this work, we employ a strongly coordinating anion and a weakly solvating cosolvent to fabricate anion-rich and varied solvation structures, aiming to enhance the low-temperature electrochemical performance of SMBs. This unique solvation configuration efficiently reduces the Na+ desolvation energy barrier, alleviates concentration polarization, accelerates liquid-phase ion transport, and facilitates the in-situ formation of a stable, highly ion-conductive electrode-electrolyte interphase. Benefiting from the synergistic regulation of interfacial stability and ion transport kinetics, dendrite-free sodium deposition is achieved at -20°C, enabling stable cycling for over 500 h at 0.5 mA cm-2 and 0.5 mAh cm-2. Additionally, the assembled SMBs exhibit excellent rate performance and cycling stability, delivering a high capacity retention of 70.54% and 68.28% after 1000 cycles at -20°C and -40°C, respectively. This work provides a novel perspective for the rational design of advanced electrolytes for high-performance low-temperature SMBs and lays a solid foundation for their practical application in cold environments.
Related Concept Videos
Theory of Strong Electrolytes
The Debye–Hückel Theory of Electrolyte Solutions
Ionic Strength: Effects on Chemical Equilibria
In this solution, the primary cation—the calcium...
Solvating Effects
Ionic Association
Electrolytes: van't Hoff Factor

