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Opportunity for eutectic mixtures in metal-ion batteries

Journal

TRENDS IN CHEMISTRY
Volume 5, Issue 3, Pages 214-224

Publisher

CELL PRESS
DOI: 10.1016/j.trechm.2023.01.003

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Breakthroughs in super-concentrated electrolytes have brought aqueous solutions to the forefront of high-safety battery devices. Eutectic mixtures have emerged as a green, safe, low-cost, and electrochemically stable electrolyte system for rechargeable metal-ion batteries (MIBs). This article summarizes the formation mechanisms, physio-chemical properties, and composition-structure-property relationships of eutectic mixtures, with a focus on their advanced functions and applications in MIBs.
Breakthroughs in super-concentrated electrolytes have pushed the aqueous solution to the forefront of the high-safety battery devices. An ideal electrolyte system should be cost-effective and stable in a wide electrochemical window. In recent years, eutectic mixtures have emerged as a green, safe, low-cost, and electrochemically stable electrolyte system for rechargeable metal-ion batteries (MIBs). Here, the fundamental understanding of the formation mecha-nisms, physio-chemical properties, and composition-structure-property rela-tionships of eutectic mixtures are summarized. Our focus is their advanced function and applications in MIBs. Considering that eutectic mixtures in MIBs are still at an early stage, we provide the challenges and perspectives which hopefully may guide the rational design of advanced eutectic mixtures for differ-ent electrochemical energy storage and conversion systems.

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