Rechargeable lithium metal batteries (LMBs) are considered as promising candidates for high-energy storage systems, but their practical applications are plagued by the severe safety concerns and poor cyclability. Here we report a fire-retardant electrolyte consisting of 2.8 M lithium bis(trifluoromethanesulfonyl)imide in triethyl phosphate (TEP) with 10 vol % fluoroethylene carbonate (FEC) for high-performance LMBs. This concentrated system with almost no free solvent molecules and anions can alleviate the electrolyte reactivity toward Li anode and improve the anodic stability up to 5.0 V. FEC cosolvents as functional additives can enhance the ionic conductivity and reduce the viscosity of the concentrated electrolyte. Moreover, the pre...
This research article describes a unique class of nonflammable electrolytes for lithium-ion batterie...
The flammability of conventional alkyl carbonate electrolytes hinders the integration of large-scale...
A novel electrochemically compatible, high-voltage, and nonflammable electrolyte has been prepared b...
Rechargeable metallic lithium batteries are considered as promising candidates for next-generation e...
Rechargeable metallic lithium batteries are considered as promising candidates for next-generation e...
Rechargeable metallic lithium batteries are considered as promising candidates for next-generation e...
Rechargeable metallic lithium batteries are considered as promising candidates for next-generation e...
We propose lithium metal cells employing LiCF₃SO₃ -tetraethylene glycol dimethy ether (TEGDME) elect...
Li metal batteries have recently attracted extensive attention due to the pursuit of high-energy-den...
Currently, concentrated electrolyte solutions are attracting special attention because of their uniq...
The flammability of organic electrolytes raises increasing safety concerns about the high-capacity b...
The flammability of organic electrolytes raises increasing safety concerns about the high-capacity b...
We propose lithium metal cells employing LiCF3SO3-tetraethylene glycol dimethy ether (TEGDME) electr...
In traditional non-flammable electrolytes a trade-off always exists between non-flammability and bat...
This research article describes a unique class of nonflammable electrolytes for lithium-ion batterie...
This research article describes a unique class of nonflammable electrolytes for lithium-ion batterie...
The flammability of conventional alkyl carbonate electrolytes hinders the integration of large-scale...
A novel electrochemically compatible, high-voltage, and nonflammable electrolyte has been prepared b...
Rechargeable metallic lithium batteries are considered as promising candidates for next-generation e...
Rechargeable metallic lithium batteries are considered as promising candidates for next-generation e...
Rechargeable metallic lithium batteries are considered as promising candidates for next-generation e...
Rechargeable metallic lithium batteries are considered as promising candidates for next-generation e...
We propose lithium metal cells employing LiCF₃SO₃ -tetraethylene glycol dimethy ether (TEGDME) elect...
Li metal batteries have recently attracted extensive attention due to the pursuit of high-energy-den...
Currently, concentrated electrolyte solutions are attracting special attention because of their uniq...
The flammability of organic electrolytes raises increasing safety concerns about the high-capacity b...
The flammability of organic electrolytes raises increasing safety concerns about the high-capacity b...
We propose lithium metal cells employing LiCF3SO3-tetraethylene glycol dimethy ether (TEGDME) electr...
In traditional non-flammable electrolytes a trade-off always exists between non-flammability and bat...
This research article describes a unique class of nonflammable electrolytes for lithium-ion batterie...
This research article describes a unique class of nonflammable electrolytes for lithium-ion batterie...
The flammability of conventional alkyl carbonate electrolytes hinders the integration of large-scale...
A novel electrochemically compatible, high-voltage, and nonflammable electrolyte has been prepared b...