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Interfacial high-concentration electrolyte for stable lithium metal . . . The NO-CNS with abundant surface negative charges not only creates an interfacial high-concentration of lithium ions near the electrode surface to promote chargetransfer kinetics but also enables a high ionic conductivity in the bulk electrolyte to improve ionic mass-transfer
Perspective on High‐Concentration Electrolytes for Lithium Metal . . . Compared with traditional electrolytes, high-concentration electrolytes (HCEs) have a higher ion transfer number, wider electrochemical window, higher thermal stability, low volatility, good flame resistance, and passivation of Al current collector at high potential
Ionic Liquid Reinforcing Ether Coordination of Localized High . . . The decomposition of 1,2-dimethoxyethane (DME) in localized high-concentration electrolytes (LHCEs) under high voltage produces fragile and unstable organic fragments at the cathode electrolyte interphase, which greatly damages the cycling performance of high-energy-density lithium metal batteries
Stable lithium metal batteries enabled by localized high-concentration . . . High-voltage lithium metal batteries with routine carbonate-based electrolytes cannot present satisfactory performances due to severe lithium-dendrite growth and side reactions at electrode–electrolyte interfaces Herein, a localized high concentration electrolyte (LHCE) is designed using fluoromethyl 1,1,1,
High-concentration electrolytes for lithium-metal batteries operating . . . In this paper, we study the construction of a high-temperature electrolyte system for lithium-metal batteries, using 0 5 M LiODFB-EC EMC (3:7) as the basic electrolyte system, and 1, 2, and 3 M LiTFSI were added to form electrolytes with different concentrations, to investigate the effect of LiTFSI concentration on lithium-metal batteries