International audienceNew electrolyte materials, polymers or inorganic glasses, allow the design of flat lithium primary or secondary batteries for miniaturised devices from smart cards to CMOS back up. The so-called “hybrid plastic electrolytes” allow the design of thick film cells (1–3 mm) with a surface capacity of some mA h cm−2. For Li-ion secondary batteries, the number of cycles does not currently exceed 500.All solid state thin film batteries are manufactured using sputtering and vacuum evaporation techniques. Their thickness and surface capacity are about one order of magnitude lower than for the polymer electrolyte batteries. In spite of metallic Li anodes, they offer a better cyclability and the solid state of all components guar...
AbstractProduction technology such as production tools, methods and processes for thin-film lithium ...
The objective of this work was to identify, synthesize and incorporate into a working prototype, nex...
10.1504/IJSURFSE.2009.024360International Journal of Surface Science and Engineering31-223-4
International audienceNew electrolyte materials, polymers or inorganic glasses, allow the design of ...
International audienceAmorphous or glassy materials may be used as electrolyte or electrode material...
This paper describes the optimization and the materials technology required for fabricating thin-fil...
The several materials required for fabrication of thin-film solid-state rechargeable lithium batteri...
AbstractThe several materials required for fabrication of thin-film solid-state rechargeable lithium...
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...
Small thin-film rechargeable cells have been fabricated with a lithium phosphorus oxyniuide electrol...
[中文文摘]本文介绍了聚合物薄膜锂电池以及全固态无机薄膜锂电池,主要对全固态无机薄膜锂电池的发展过程以及其阴极材料、阳极材料、无机固态电解质的性能和制备技术进行了综述;同时介绍了全固态薄膜锂电池结构的...
For the application of durable micro-storage for autonomous systems and implants, 3D thin-film batte...
Downschematically in Fig. 2a and b. The thin-film battery is fabricated with an initial cell configu...
AbstractProduction technology such as production tools, methods and processes for thin-film lithium ...
The objective of this work was to identify, synthesize and incorporate into a working prototype, nex...
10.1504/IJSURFSE.2009.024360International Journal of Surface Science and Engineering31-223-4
International audienceNew electrolyte materials, polymers or inorganic glasses, allow the design of ...
International audienceAmorphous or glassy materials may be used as electrolyte or electrode material...
This paper describes the optimization and the materials technology required for fabricating thin-fil...
The several materials required for fabrication of thin-film solid-state rechargeable lithium batteri...
AbstractThe several materials required for fabrication of thin-film solid-state rechargeable lithium...
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...
Small thin-film rechargeable cells have been fabricated with a lithium phosphorus oxyniuide electrol...
[中文文摘]本文介绍了聚合物薄膜锂电池以及全固态无机薄膜锂电池,主要对全固态无机薄膜锂电池的发展过程以及其阴极材料、阳极材料、无机固态电解质的性能和制备技术进行了综述;同时介绍了全固态薄膜锂电池结构的...
For the application of durable micro-storage for autonomous systems and implants, 3D thin-film batte...
Downschematically in Fig. 2a and b. The thin-film battery is fabricated with an initial cell configu...
AbstractProduction technology such as production tools, methods and processes for thin-film lithium ...
The objective of this work was to identify, synthesize and incorporate into a working prototype, nex...
10.1504/IJSURFSE.2009.024360International Journal of Surface Science and Engineering31-223-4