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Butadiene Sulfone Based Binary Deep Eutectic Electrolyte for High Performance Lithium Metal Batteries

Tiankun Zhou, Chengjun Lei, Jinye Li, Huijian Wang, Tingting Liu, Xin He, Xin He, Xiao Liang

2024Angewandte Chemie International Edition30 citationsDOI

Abstract

Abstract Deep eutectic electrolytes (DEEs) have attracted significant interest due to the unique physiochemical properties, yet challenges persist in achieving satisfactory Li anode compatibility through a binary DEE formula. In this study, we introduce a nonflammable binary DEE electrolyte comprising of lithium bis(trifluoro‐methane‐sulfonyl)imide (LiTFSI) and solid butadiene sulfone (BdS), which demonstrates enhanced Li metal compatibility while exhibiting high Li + ion migration number (0.52), ionic conductivity (1.48 mS ⋅ cm −1 ), wide electrochemical window (~4.5 V vs. Li/Li + ) at room temperature. Experimental and theoretical results indicate that the Li compatibility derives from the formation of a LiF‐rich SEI, attributed to the undesirable adsorption and deformation of BdS on Li surface that facilitates the preferential reactions between LiTFSI and Li metal. This stable SEI effectively suppresses dendrites growth and gas evolution reactions, ensuring a long lifespan and high coulombic efficiency in both the Li||Li symmetric cells, Li||LiCoO 2 and Li||LiNi 0.8 Co 0.1 Mn 0.1 O 2 full cells. Moreover, the BdS eutectic strategy exhibit universal applicability to other metal such as Na and Zn by pairing with the corresponding TFSI‐based salts.

Topics & Concepts

Eutectic systemLithium metalElectrolyteMaterials scienceSulfoneLithium (medication)Binary numberBattery (electricity)MetalChemical engineeringMetallurgyElectrodeChemistryPolymer chemistryAlloyEngineeringThermodynamicsPhysical chemistryMathematicsPower (physics)ArithmeticMedicineEndocrinologyPhysicsAdvanced Battery Materials and TechnologiesAdvancements in Battery MaterialsAdvanced Battery Technologies Research
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