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Solid-state Graft Copolymer Electrolytes for Lithium Battery Applications
Published on: August 12, 2013
Solvation Interactions in Water-DMSO Electrolyte Systems for Enhanced Aqueous Lithium Battery Performance
Gil Bergman1, Nicole Leifer1, Yaroslav Zhigalenok2
1Department of Chemistry, BINA - BIU Institute for Nanotechnology and Advanced Materials, INIES - Israel National Institute for Energy Storage, Bar-Ilan University, Ramat-Gan 5290002, Israel.
None:
Hybrid electrolyte solutions composed of water and water-miscible organic solvents have gained attention for their extended electrochemical stability window, nonflammability, high ionic conductivity, and cost-effectiveness. Among them, dimethyl sulfoxide (DMSO) is a particularly attractive cosolvent due to its high dielectric constant, strong hydrogen-bonding ability, low volatility, and excellent chemical stability. When mixed with water, DMSO disrupts the native hydrogen-bond network, significantly altering key physicochemical properties such as viscosity, density, dielectric constant, and water activity─all of which are highly sensitive to composition. Despite their potential, the behavior of water-DMSO electrolytes under high salt concentrations and their effects on electrode performance remain underexplored. Here, we investigated nearly saturated LiClO4 solutions in water-DMSO mixtures, combining electrochemical testing with NMR, Raman spectroscopies, and theoretical modeling to reveal solvation structures and ion-solvent interactions. We further evaluated how these electrolyte solution compositions impact the electrochemical performance of LiMn2O4 cathodes and TiO2 anodes. These insights highlight the promise of DMSO-based hybrid electrolyte solutions for advancing safe and high-performance aqueous lithium battery technologies.
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