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Solvent‐Mediated Li<sub>2</sub>S Electrodeposition: A Critical Manipulator in Lithium–Sulfur Batteries
396
Citations
47
References
2018
Year
Materials ScienceChemical EngineeringLi 2EngineeringBattery Electrode MaterialsLi-ion Battery MaterialsLithium–sulfur BatteriesLithium-ion BatteryLithium-ion BatteriesBattery AdditivesPremature Li 2Energy StorageElectrochemical Energy StorageBatteriesChemistrySolid Li 2Solid-state BatteryElectrochemistry
Abstract Controlling electrochemical deposition of lithium sulfide (Li 2 S) is a major challenge in lithium–sulfur batteries as premature Li 2 S passivation leads to low sulfur utilization and low rate capability. In this work, the solvent's roles in controlling solid Li 2 S deposition are revealed, and quantitative solvent‐mediated Li 2 S growth models as guides to solvent selection are developed. It is shown that Li 2 S electrodeposition is controlled by electrode kinetics, Li 2 S solubility, and the diffusion of polysulfide/Li 2 S, which is dictated by solvent's donicity, polarity, and viscosity, respectively. These solvent‐controlled properties are essential factors pertaining to the sulfur utilization, energy efficiency and reversibility of lithium–sulfur batteries. It is further demonstrated that the solvent selection criteria developed in this study are effective in guiding the search for new and more effective electrolytes, providing effective screening and design criteria for computational and experimental electrolyte development for lithium–sulfur batteries.
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