Nickel-rich layered oxides are currently considered the most practical candidates for realizing high-energy-density lithium metal batteries (LMBs) because of their relatively high capacities. However, undesired nickel-rich cathode-electrolyte interactions hinder their applicability. Here, we report a satisfactory combination of an antioxidant fluorinated ether solvent and an ionic additive that can form a stable, robust interfacial structure on the nickel-rich cathode in ether-based electrolytes. The fluorinated ether 1,1,2,2-tetrafluoroethyl-1H,1H,5H-octafluoropentyl ether (TFOFE) introduced as a cosolvent into ether-based electrolytes stabilizes the electrolytes against oxidation at the LiNi0.8Mn0.1Co0.1O2 (NCM811) cathode while simultane...
Lithium metal batteries (LMBs) with nickel-rich cathodes are promising candidates for next-generatio...
Electrolyte is the key to improve the safety, cycle performance and temperature adaptation of lithiu...
The key to realize long-life high energy density lithium batteries is to exploit functional electrol...
Li metal anodes and Ni-rich layered oxide cathodes with high reversible capacities are promising can...
The cathode/electrolyte interface stability is the key factor for the cyclic performance and the saf...
Lithium-ion batteries (LIBs) have been recently gained recognition as one of the most reliable energ...
The advancement of electrolyte systems has enabled the development of high-performance Li metal batt...
Lithium difluoro(bisoxalato)phosphate (LiDFBP) is introduced as a novel lithium-salt-type electrolyt...
There are several routes available for improving the energy density of lithium-based batteries. One ...
Electrolytes using fluorinated solvents have proven effective in improving the cycling life of Li-me...
Advanced electrolytes with unique functions such as in situ formation of a stable artificial solid e...
The unstable electrode/electrolyte interface is one of the key obstacles for practical Ah-level Li m...
A highly fluorinated additive, pentafluoropyridine (PFP), is used here to enhance the interfacial st...
Metallic lithium (Li) has great potential as an anode material for high-energy-density batteries due...
© 2022 American Chemical Society. All rights reserved.A variety of electrolyte engineering strategie...
Lithium metal batteries (LMBs) with nickel-rich cathodes are promising candidates for next-generatio...
Electrolyte is the key to improve the safety, cycle performance and temperature adaptation of lithiu...
The key to realize long-life high energy density lithium batteries is to exploit functional electrol...
Li metal anodes and Ni-rich layered oxide cathodes with high reversible capacities are promising can...
The cathode/electrolyte interface stability is the key factor for the cyclic performance and the saf...
Lithium-ion batteries (LIBs) have been recently gained recognition as one of the most reliable energ...
The advancement of electrolyte systems has enabled the development of high-performance Li metal batt...
Lithium difluoro(bisoxalato)phosphate (LiDFBP) is introduced as a novel lithium-salt-type electrolyt...
There are several routes available for improving the energy density of lithium-based batteries. One ...
Electrolytes using fluorinated solvents have proven effective in improving the cycling life of Li-me...
Advanced electrolytes with unique functions such as in situ formation of a stable artificial solid e...
The unstable electrode/electrolyte interface is one of the key obstacles for practical Ah-level Li m...
A highly fluorinated additive, pentafluoropyridine (PFP), is used here to enhance the interfacial st...
Metallic lithium (Li) has great potential as an anode material for high-energy-density batteries due...
© 2022 American Chemical Society. All rights reserved.A variety of electrolyte engineering strategie...
Lithium metal batteries (LMBs) with nickel-rich cathodes are promising candidates for next-generatio...
Electrolyte is the key to improve the safety, cycle performance and temperature adaptation of lithiu...
The key to realize long-life high energy density lithium batteries is to exploit functional electrol...