Lithium metal has gravimetric capacity ∼10× that of graphite which incentivizes rechargeable Li metal batteries (RLMB) development. A key factor that limits practical use of RLMB is morphological instability of Li metal anode upon electrodeposition, reflected by the uncontrolled area growth of solid-electrolyte interphase that traps cyclable Li, quantified by the Coulombic inefficiency (CI). Here we show that CI decreases approximately exponentially with increasing donatable fluorine concentration of the electrolyte. By using up to 7 m of Li bis(fluorosulfonyl)imide in fluoroethylene carbonate, where both the solvent and the salt donate F, we can significantly suppress anode porosity and improve the Coulombic efficiency to 99.64%. The elect...
Li metal batteries have recently attracted extensive attention due to the pursuit of high-energy-den...
The development of lithium (Li)-metal anode is high priority research to initiate next-generation Li...
Blending additive with electrolyte is a facile and effective method to suppress anode dendrite growt...
Li metal anodes and Ni-rich layered oxide cathodes with high reversible capacities are promising can...
Li metal is regarded as the most promising battery anode to boost energy density. However, being fa...
Lithium metal is an ideal battery anode. However, dendrite growth and limited Coulombic efficiency d...
In past decades, lithium-ion batteries (LIBs) were the dominant energy storage systems for powering ...
To understand the baseline performance of lithium (Li) anode in liquid electrolytes, the electrochem...
The advancement of electrolyte systems has enabled the development of high-performance Li metal batt...
More energy dense lithium ion batteries are essential for the production of long-range electric vehi...
Lithium metal anodes can largely enhance the energy density of rechargeable batteries because of the...
Electrolytes using fluorinated solvents have proven effective in improving the cycling life of Li-me...
Lithium metal batteries (LMBs) with nickel-rich cathodes are promising candidates for next-generatio...
Metallic lithium, with super high theoretical specific capacity, enjoys great potential as an anode ...
© 2020 National Academy of Sciences. All rights reserved. Lithium is the most attractive anode mater...
Li metal batteries have recently attracted extensive attention due to the pursuit of high-energy-den...
The development of lithium (Li)-metal anode is high priority research to initiate next-generation Li...
Blending additive with electrolyte is a facile and effective method to suppress anode dendrite growt...
Li metal anodes and Ni-rich layered oxide cathodes with high reversible capacities are promising can...
Li metal is regarded as the most promising battery anode to boost energy density. However, being fa...
Lithium metal is an ideal battery anode. However, dendrite growth and limited Coulombic efficiency d...
In past decades, lithium-ion batteries (LIBs) were the dominant energy storage systems for powering ...
To understand the baseline performance of lithium (Li) anode in liquid electrolytes, the electrochem...
The advancement of electrolyte systems has enabled the development of high-performance Li metal batt...
More energy dense lithium ion batteries are essential for the production of long-range electric vehi...
Lithium metal anodes can largely enhance the energy density of rechargeable batteries because of the...
Electrolytes using fluorinated solvents have proven effective in improving the cycling life of Li-me...
Lithium metal batteries (LMBs) with nickel-rich cathodes are promising candidates for next-generatio...
Metallic lithium, with super high theoretical specific capacity, enjoys great potential as an anode ...
© 2020 National Academy of Sciences. All rights reserved. Lithium is the most attractive anode mater...
Li metal batteries have recently attracted extensive attention due to the pursuit of high-energy-den...
The development of lithium (Li)-metal anode is high priority research to initiate next-generation Li...
Blending additive with electrolyte is a facile and effective method to suppress anode dendrite growt...