We fabricated flexible thin film lithium ion battery for the functional system requires bio-compatible design to human body. The thin film battery will be composed of each cell that consists of a cathode and an anode electrode separated by an electrolyte that enables ion transfer between the two electrodes. We used KAPTON film for the substrate to deposit current collector materials, copper, aluminum, and platinum with sputter deposition technique. The cathode and the anode were composed of Lithium cobalt oxide (LCO) and Li, respectively. Solid-state electrolyte, an amorphous lithium phosphorous oxynitride, was used to solve the safety issues that liquid electrolyte has. The Lipon layer was patterned by lift-off technique to control the are...
Rechargeable solid-state lithium batteries were developed before [1] by physical vapour deposition. ...
Small thin-film rechargeable cells have been fabricated with a lithium phosphorus oxyniuide electrol...
International audienceNew electrolyte materials, polymers or inorganic glasses, allow the design of ...
The purpose of this project is to fabricate a micro-size lithium ion battery for bio-integrated devi...
Flexible thin-film rechargeable lithium battery was fabricated only by PVD techniques. The Kapton® s...
This paper describes the optimization and the materials technology required for fabricating thin-fil...
Flexible thin-film rechargeable lithium battery was fabricated only by PVD techniques. The Kapton® s...
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...
The application of micro electromechanical systems (MEMS) technology in several consumer electronic...
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...
Thin-film materials for solid-state rechargeable lithium batteries were fabricated by physical vapor...
Abstract — This paper presents the microfabrica-tion and materials characterization of thin-film sol...
Downschematically in Fig. 2a and b. The thin-film battery is fabricated with an initial cell configu...
Rechargeable solid-state lithium batteries were developed before [1] by physical vapour deposition. ...
Small thin-film rechargeable cells have been fabricated with a lithium phosphorus oxyniuide electrol...
International audienceNew electrolyte materials, polymers or inorganic glasses, allow the design of ...
The purpose of this project is to fabricate a micro-size lithium ion battery for bio-integrated devi...
Flexible thin-film rechargeable lithium battery was fabricated only by PVD techniques. The Kapton® s...
This paper describes the optimization and the materials technology required for fabricating thin-fil...
Flexible thin-film rechargeable lithium battery was fabricated only by PVD techniques. The Kapton® s...
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...
The application of micro electromechanical systems (MEMS) technology in several consumer electronic...
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...
Thin-film materials for solid-state rechargeable lithium batteries were fabricated by physical vapor...
Abstract — This paper presents the microfabrica-tion and materials characterization of thin-film sol...
Downschematically in Fig. 2a and b. The thin-film battery is fabricated with an initial cell configu...
Rechargeable solid-state lithium batteries were developed before [1] by physical vapour deposition. ...
Small thin-film rechargeable cells have been fabricated with a lithium phosphorus oxyniuide electrol...
International audienceNew electrolyte materials, polymers or inorganic glasses, allow the design of ...