Next generation batteries based on lithium (Li) metal anodes have been plagued by the dendritic electrodeposition of Li metal on the anode during cycling, resulting in short circuit and capacity loss. Suppression of dendritic growth through the use of solid electrolytes has emerged as one of the most promising strategies for enabling the use of Li metal anodes. We perform a computational screening of over 12 000 inorganic solids based on their ability to suppress dendrite initiation in contact with Li metal anode. Properties for mechanically isotropic and anisotropic interfaces that can be used in stability criteria for determining the propensity of dendrite initiation are usually obtained from computationally expensive first-principles met...
Most next-generation Li ion battery chemistries require a functioning lithium metal (Li) anode. Howe...
Most next-generation Li ion battery chemistries require a functioning lithium metal (Li) anode. Howe...
The next generation of rechargeable batteries must have significantly improved gravimetric and volum...
Next generation batteries based on lithium (Li) metal anodes have been plagued by the dendritic elec...
Next generation batteries based on lithium (Li) metal anodes have been plagued by the dendritic elec...
Next generation batteries based on lithium (Li) metal anodes have been plagued by the dendritic elec...
Next generation batteries based on lithium (Li) metal anodes have been plagued by the dendritic elec...
The main obstacle to the development of the next-generation Li-based batteries is the formation of L...
All solid-state batteries provide many safety advantages over traditional lithium-ion batteries by r...
We discover many new crystalline solid materials with fast single crystal Li ion conductivity at roo...
Future lithium-ion batteries must use lithium metal anodes to fulfill the demands of high energy den...
Li-ion solid-state electrolytes (Li-SSEs) hold promise to solve critical issues related to conventio...
Future lithium-ion batteries must use lithium metal anodes to fulfill the demands of high energy den...
Li-ion solid-state electrolytes (Li-SSEs) hold promise to solve critical issues related to conventio...
Future lithium-ion batteries must use lithium metal anodes to fulfill the demands of high energy den...
Most next-generation Li ion battery chemistries require a functioning lithium metal (Li) anode. Howe...
Most next-generation Li ion battery chemistries require a functioning lithium metal (Li) anode. Howe...
The next generation of rechargeable batteries must have significantly improved gravimetric and volum...
Next generation batteries based on lithium (Li) metal anodes have been plagued by the dendritic elec...
Next generation batteries based on lithium (Li) metal anodes have been plagued by the dendritic elec...
Next generation batteries based on lithium (Li) metal anodes have been plagued by the dendritic elec...
Next generation batteries based on lithium (Li) metal anodes have been plagued by the dendritic elec...
The main obstacle to the development of the next-generation Li-based batteries is the formation of L...
All solid-state batteries provide many safety advantages over traditional lithium-ion batteries by r...
We discover many new crystalline solid materials with fast single crystal Li ion conductivity at roo...
Future lithium-ion batteries must use lithium metal anodes to fulfill the demands of high energy den...
Li-ion solid-state electrolytes (Li-SSEs) hold promise to solve critical issues related to conventio...
Future lithium-ion batteries must use lithium metal anodes to fulfill the demands of high energy den...
Li-ion solid-state electrolytes (Li-SSEs) hold promise to solve critical issues related to conventio...
Future lithium-ion batteries must use lithium metal anodes to fulfill the demands of high energy den...
Most next-generation Li ion battery chemistries require a functioning lithium metal (Li) anode. Howe...
Most next-generation Li ion battery chemistries require a functioning lithium metal (Li) anode. Howe...
The next generation of rechargeable batteries must have significantly improved gravimetric and volum...