Thin films of LiCoO{sub 2} have been synthesized in which the strongest x-ray reflection is either weak or missing, indicating a high degree of preferred orientation. Thin-film solid state batteries with these textured cathode films can deliver practical capacities at high current densities. For example, for one of the cells 70% of the maximum capacity between 4.2 V and 3 V ({approximately}0.2 mAh/cm{sup 2}) was delivered at a current of 2 mA/cm{sup 2}. When cycled at rates of 0.1 mA/cm{sup 2}, the capacity loss was 0.001 %/cycle or less. The reliability and performance of Li-LiCoO{sub 2} thin-film batteries make them attractive for application in implantable devices such as neural stimulators, pacemakers, and defibrillators
Completely inorganic thin film lithium ion battery cells have been prepared by vapor deposition proc...
Thin-film solid-state rechargeable batteries on silicon are ideal power sources for microsystems app...
For the application of durable micro-storage for autonomous systems and implants, 3D thin-film batte...
Research carried out at ORNL has led to the development of solid state thin-film rechargeable lithiu...
This paper presents the microfabrication and materials characterization of thin-film solid-state r...
This paper describes the optimization and the materials technology required for fabricating thin-fil...
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...
Abstract This paper describes the optimization and the materials technology required for fabricatin...
International audienceNew electrolyte materials, polymers or inorganic glasses, allow the design of ...
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...
AbstractThe several materials required for fabrication of thin-film solid-state rechargeable lithium...
Small thin-film rechargeable cells have been fabricated with a lithium phosphorus oxyniuide electrol...
Research over the last decade at Oak Ridge National Laboratory has led to the development of solid-s...
Completely inorganic thin film lithium ion battery cells have been prepared by vapor deposition proc...
Thin-film solid-state rechargeable batteries on silicon are ideal power sources for microsystems app...
For the application of durable micro-storage for autonomous systems and implants, 3D thin-film batte...
Research carried out at ORNL has led to the development of solid state thin-film rechargeable lithiu...
This paper presents the microfabrication and materials characterization of thin-film solid-state r...
This paper describes the optimization and the materials technology required for fabricating thin-fil...
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...
Abstract This paper describes the optimization and the materials technology required for fabricatin...
International audienceNew electrolyte materials, polymers or inorganic glasses, allow the design of ...
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...
AbstractThe several materials required for fabrication of thin-film solid-state rechargeable lithium...
Small thin-film rechargeable cells have been fabricated with a lithium phosphorus oxyniuide electrol...
Research over the last decade at Oak Ridge National Laboratory has led to the development of solid-s...
Completely inorganic thin film lithium ion battery cells have been prepared by vapor deposition proc...
Thin-film solid-state rechargeable batteries on silicon are ideal power sources for microsystems app...
For the application of durable micro-storage for autonomous systems and implants, 3D thin-film batte...