AbstractThe several materials required for fabrication of thin-film solid-state rechargeable lithium batteries were deposited and characterized: A glassy lithium-phosphorus oxynitride electrolyte (LiPON) between a lithium (Li) anode and crystalline lithium-cobalt oxide cathode (LiCoO2), deposited by RF-sputtering. Ti/Pt layers, deposited by e-beam were used in contacts and a silicon nitride film (Si3N4), deposited by low temperature hot-wire CVD protects the battery. This technology allows batteries with a potential of 4.5 V, typical capacities of 50 μAcm−2 and chargedischarge rates up to 4C. Solid-state film batteries show faster charge rates and very high cycle life, compared with film polymer batteries, withstanding several thousands of ...
International audienceNew electrolyte materials, polymers or inorganic glasses, allow the design of ...
Thin-film solid-state rechargeable batteries on silicon are ideal power sources for microsystems app...
AbstractThin-film solid-state rechargeable batteries on silicon are ideal power sources for microsys...
AbstractThe several materials required for fabrication of thin-film solid-state rechargeable lithium...
The several materials required for fabrication of thin-film solid-state rechargeable lithium batteri...
This paper describes the optimization and the materials technology required for fabricating thin-fil...
Abstract This paper describes the optimization and the materials technology required for fabricatin...
This paper presents the microfabrication and materials characterization of thin-film solid-state r...
Abstract — This paper presents the microfabrica-tion and materials characterization of thin-film sol...
Thin-film materials for solid-state rechargeable lithium batteries were fabricated by physical vapor...
Rechargeable solid-state lithium batteries were developed before [1] by physical vapour deposition. ...
Thin-film materials for solid-state rechargeable lithium batteries were fabricated by physical vapor...
Rechargeable solid-state lithium batteries were developed before [1] by physical vapour deposition (...
Energy storage is mostly achieved with batteries and is a huge challenge of 21st century [1]. Despit...
AbstractRechargeable solid-state lithium batteries were developed before [1] by physical vapour depo...
International audienceNew electrolyte materials, polymers or inorganic glasses, allow the design of ...
Thin-film solid-state rechargeable batteries on silicon are ideal power sources for microsystems app...
AbstractThin-film solid-state rechargeable batteries on silicon are ideal power sources for microsys...
AbstractThe several materials required for fabrication of thin-film solid-state rechargeable lithium...
The several materials required for fabrication of thin-film solid-state rechargeable lithium batteri...
This paper describes the optimization and the materials technology required for fabricating thin-fil...
Abstract This paper describes the optimization and the materials technology required for fabricatin...
This paper presents the microfabrication and materials characterization of thin-film solid-state r...
Abstract — This paper presents the microfabrica-tion and materials characterization of thin-film sol...
Thin-film materials for solid-state rechargeable lithium batteries were fabricated by physical vapor...
Rechargeable solid-state lithium batteries were developed before [1] by physical vapour deposition. ...
Thin-film materials for solid-state rechargeable lithium batteries were fabricated by physical vapor...
Rechargeable solid-state lithium batteries were developed before [1] by physical vapour deposition (...
Energy storage is mostly achieved with batteries and is a huge challenge of 21st century [1]. Despit...
AbstractRechargeable solid-state lithium batteries were developed before [1] by physical vapour depo...
International audienceNew electrolyte materials, polymers or inorganic glasses, allow the design of ...
Thin-film solid-state rechargeable batteries on silicon are ideal power sources for microsystems app...
AbstractThin-film solid-state rechargeable batteries on silicon are ideal power sources for microsys...