Low-temperature thin films of Li1+xV3O8 have been fabricated and tested in LiClO4/propylene carbonate-1,2-dimethoxyethane/Li cells. These cells show very good intercalation kinetics, and at 0.4 C discharge rate produce a specific energy of approximate to 110 Wh/kg. The films could be used in microbatteries for electronic devices, and applications requiring more power could also be envisaged
We have fabricated thin-film cathodes of lithiated manganese oxide (Li(x)Mn2O4, where x less-than-or...
Low temperature thin film LixMn2O4 spinel, with x congruent-to 1, are fabricated for use in secondar...
AbstractRechargeable solid-state lithium batteries were developed before [1] by physical vapour depo...
Thin-film rechargeable lithium batteries using ceramic electrolyte and cathode materials have been f...
Research over the last decade at Oak Ridge National Laboratory has led to the development of solid-s...
Low temperature thin film LixMn.,O ~ spinel, with x ~ 1, are fabricated for use in secondary batteri...
Abstract This paper describes the optimization and the materials technology required for fabricatin...
This paper describes the optimization and the materials technology required for fabricating thin-fil...
This paper presents the microfabrication and materials characterization of thin-film solid-state r...
Thin films of LiCoO{sub 2} have been synthesized in which the strongest x-ray reflection is either w...
The several materials required for fabrication of thin-film solid-state rechargeable lithium batteri...
Abstract — This paper presents the microfabrica-tion and materials characterization of thin-film sol...
AbstractThe several materials required for fabrication of thin-film solid-state rechargeable lithium...
Thin-film materials for solid-state rechargeable lithium batteries were fabricated by physical vapor...
International audienceNew electrolyte materials, polymers or inorganic glasses, allow the design of ...
We have fabricated thin-film cathodes of lithiated manganese oxide (Li(x)Mn2O4, where x less-than-or...
Low temperature thin film LixMn2O4 spinel, with x congruent-to 1, are fabricated for use in secondar...
AbstractRechargeable solid-state lithium batteries were developed before [1] by physical vapour depo...
Thin-film rechargeable lithium batteries using ceramic electrolyte and cathode materials have been f...
Research over the last decade at Oak Ridge National Laboratory has led to the development of solid-s...
Low temperature thin film LixMn.,O ~ spinel, with x ~ 1, are fabricated for use in secondary batteri...
Abstract This paper describes the optimization and the materials technology required for fabricatin...
This paper describes the optimization and the materials technology required for fabricating thin-fil...
This paper presents the microfabrication and materials characterization of thin-film solid-state r...
Thin films of LiCoO{sub 2} have been synthesized in which the strongest x-ray reflection is either w...
The several materials required for fabrication of thin-film solid-state rechargeable lithium batteri...
Abstract — This paper presents the microfabrica-tion and materials characterization of thin-film sol...
AbstractThe several materials required for fabrication of thin-film solid-state rechargeable lithium...
Thin-film materials for solid-state rechargeable lithium batteries were fabricated by physical vapor...
International audienceNew electrolyte materials, polymers or inorganic glasses, allow the design of ...
We have fabricated thin-film cathodes of lithiated manganese oxide (Li(x)Mn2O4, where x less-than-or...
Low temperature thin film LixMn2O4 spinel, with x congruent-to 1, are fabricated for use in secondar...
AbstractRechargeable solid-state lithium batteries were developed before [1] by physical vapour depo...