The next generation of rechargeable batteries must have significantly improved gravimetric and volumetric energy densities while maintaining a long cycle life and a low risk of catastrophic failure. Replacing the conventional graphite anode in a lithium ion battery with lithium foil increases the theoretical energy density of the battery by more than 40%. Furthermore, there is significant interest within the scientific community on new cathode chemistries, like sulfur and air, that presume the use of a lithium metal anode to achieve theoretical energy densities as high as 5217 W·h/kg. However, lithium metal is highly unstable toward traditional liquid electrolytes like ethylene carbonate and dimethyl carbonate. The solid electrolyte interph...
Lithium Li metal is considered as promising anode material for high energy density rechargeable ba...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
The next generation of rechargeable batteries must have significantly improved gravimetric and volum...
Future lithium-ion batteries must use lithium metal anodes to fulfill the demands of high energy den...
Future lithium-ion batteries must use lithium metal anodes to fulfill the demands of high energy den...
Future lithium-ion batteries must use lithium metal anodes to fulfill the demands of high energy den...
Understanding and controlling the electrochemical deposition of lithium is imperative for the safe u...
Lithium metal batteries have the highest energy density of any battery technology and are, therefore...
Replacing the conventional graphite anode in rechargeable batteries with lithium metal results in a ...
Replacing the conventional graphite anode in rechargeable batteries with lithium metal results in a ...
Solid polymer electrolyte (SPE) membranes are a critical component of high specific energy rechargea...
Lithium Li metal is considered as promising anode material for high energy density rechargeable ba...
Lithium Li metal is considered as promising anode material for high energy density rechargeable ba...
Smaller, lighter, more powerful batteries will help drive the next generation of mobile technologies...
Lithium Li metal is considered as promising anode material for high energy density rechargeable ba...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
The next generation of rechargeable batteries must have significantly improved gravimetric and volum...
Future lithium-ion batteries must use lithium metal anodes to fulfill the demands of high energy den...
Future lithium-ion batteries must use lithium metal anodes to fulfill the demands of high energy den...
Future lithium-ion batteries must use lithium metal anodes to fulfill the demands of high energy den...
Understanding and controlling the electrochemical deposition of lithium is imperative for the safe u...
Lithium metal batteries have the highest energy density of any battery technology and are, therefore...
Replacing the conventional graphite anode in rechargeable batteries with lithium metal results in a ...
Replacing the conventional graphite anode in rechargeable batteries with lithium metal results in a ...
Solid polymer electrolyte (SPE) membranes are a critical component of high specific energy rechargea...
Lithium Li metal is considered as promising anode material for high energy density rechargeable ba...
Lithium Li metal is considered as promising anode material for high energy density rechargeable ba...
Smaller, lighter, more powerful batteries will help drive the next generation of mobile technologies...
Lithium Li metal is considered as promising anode material for high energy density rechargeable ba...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...