Identifying the Role of Solvation Entropy for the Solvation Chemistry in Nonaqueous Electrolytes

K Kean Chen (College of Chemistry and Molecular Sciences, Hubei Key Laboratory of Electrochemical Power Sources) H Hui Chen Z Zhenxu Zheng (College of Chemistry and Molecular Sciences Hubei Key Laboratory of Electrochemical Power Sources Wuhan University Wuhan 430072 China) Y Yuwen Liu Y Yongjin Fang (Hubei Key Laboratory of Electrochemical Power Sources, College of Chemistry and Molecular Sciences) Z Zhongxue Chen (Key Laboratory of Hydraulic Machinery Transients, School of Power and Mechanical Engineering, Ministry of Education) Y Yuliang Cao (College of Chemistry and Molecular Sciences, Hubei Key Laboratory of Electrochemical Power Sources)

Abstract

Abstract Solvating power, a pivotal determinant of solvation structure, has been extensively studied in past few decades. However, extant descriptors such as donor number and binding energy, predominantly focus on solvation enthalpy, while ignoring crucial solvation entropy, which often leads to contradictory conclusions. Here, we surmount this issue by exploring the relationship between the solvation thermodynamics and solvating power. It is revealed that high solvation entropy of polydentate solvents (DME, DGDME, etc.) endows them with strong solvating power in spite of their low binding energy. Even for monodentate solvents, solvation entropy is also non‐negligible. Thus, solvation free energy (Δ G ) is first proposed as a perfect descriptor of solvating power, which includes the effect of solvation entropy. Drawing on profound insights of solvation thermodynamics and solvating power, a database of Δ G Avg and permittivity of common solvents is established to provide pivotal inspirations for the design of solvation structure for next‐generation advanced electrolytes.

Article Details

Volume / Issue Vol. 64, Issue 29
Published July 14, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (7)

K

Kean Chen

College of Chemistry and Molecular Sciences, Hubei Key Laboratory of Electrochemical Power Sources

H

Hui Chen

Z

Zhenxu Zheng

College of Chemistry and Molecular Sciences Hubei Key Laboratory of Electrochemical Power Sources Wuhan University Wuhan 430072 China

Y

Yuwen Liu

Y

Yongjin Fang

Hubei Key Laboratory of Electrochemical Power Sources, College of Chemistry and Molecular Sciences

Z

Zhongxue Chen

Key Laboratory of Hydraulic Machinery Transients, School of Power and Mechanical Engineering, Ministry of Education

Y

Yuliang Cao

College of Chemistry and Molecular Sciences, Hubei Key Laboratory of Electrochemical Power Sources