Realization of an outermost layer on the surface of metallic lithium is performed via reactive exposure of a thin lithium foil to a constant flow of pure O-2 gas in a controlled, airtight environment to form spontaneously a ceramic-type, Li-ion conductive film for use in rechargeable lithium metal batteries with a liquid electrolyte. This layer acts as possible intermediate 'buffer' between the underlying lithium and solid electrolyte interphase (SEI) formed in contact with the electrolyte. The impact of this oxygen-containing layer on the cycle performances of thin lithium anodes and associated surface evolution are studied here in cells having LiFePO4 as stable cathode. The influence of this protective layer on 30 mu m-thick lithium metal...
The demand for batteries with higher energy densities for energy storage and electric vehicles motiv...
Increasing demands for advanced lithium batteries with higher energy density have resurrected the us...
The propensity of lithium dendrite formation during the charging process of lithium metal batteries ...
Realization of an outermost layer on the surface of metallic lithium is performed via reactive expos...
Motivated by new applications including electric vehicles and the smart grid, interest in advanced l...
The stability of solid-electrolyte interphase (SEI) surface films at Li-metal anodes is crucial for ...
The stability of solid-electrolyte interphase (SEI) surface films at Li-metal anodes is crucial for ...
The problem of Li metal degradation, which leads to drastic side reactions, must be solved for impro...
Rechargeable solid-state lithium batteries were developed before [1] by physical vapour deposition. ...
Rechargeable solid-state lithium batteries were developed before [1] by physical vapour deposition (...
Lithium metal anode is regarded as the ultimate negative electrode material due to its high theoreti...
AbstractRechargeable solid-state lithium batteries were developed before [1] by physical vapour depo...
Lithium metals have been considered as the most promising anode materials for next-generation rechar...
Recently, a consensus has been reached that using lithium metal as an anode in rechargeable Li-ion b...
Lithium-ion batteries (LIBs) have been recently gained recognition as one of the most reliable energ...
The demand for batteries with higher energy densities for energy storage and electric vehicles motiv...
Increasing demands for advanced lithium batteries with higher energy density have resurrected the us...
The propensity of lithium dendrite formation during the charging process of lithium metal batteries ...
Realization of an outermost layer on the surface of metallic lithium is performed via reactive expos...
Motivated by new applications including electric vehicles and the smart grid, interest in advanced l...
The stability of solid-electrolyte interphase (SEI) surface films at Li-metal anodes is crucial for ...
The stability of solid-electrolyte interphase (SEI) surface films at Li-metal anodes is crucial for ...
The problem of Li metal degradation, which leads to drastic side reactions, must be solved for impro...
Rechargeable solid-state lithium batteries were developed before [1] by physical vapour deposition. ...
Rechargeable solid-state lithium batteries were developed before [1] by physical vapour deposition (...
Lithium metal anode is regarded as the ultimate negative electrode material due to its high theoreti...
AbstractRechargeable solid-state lithium batteries were developed before [1] by physical vapour depo...
Lithium metals have been considered as the most promising anode materials for next-generation rechar...
Recently, a consensus has been reached that using lithium metal as an anode in rechargeable Li-ion b...
Lithium-ion batteries (LIBs) have been recently gained recognition as one of the most reliable energ...
The demand for batteries with higher energy densities for energy storage and electric vehicles motiv...
Increasing demands for advanced lithium batteries with higher energy density have resurrected the us...
The propensity of lithium dendrite formation during the charging process of lithium metal batteries ...