The current commercial standard thin film electrolyte LiPON is the limiting factor for the further development of microbatteries due to its low Li+ ionic conductivity (2 × 10–6 S/cm). In order to produce more conductive electrolytes and elucidate the synthesis–properties interrelation for this system, we sputtered thin films from single-phase ceramic targets of composition Li3+xSixP1–xO4 under Ar and N2 atmospheres. The amorphous thin films produced under Ar (LiSiPO) are more conducting than the crystalline target materials (amorphization effect). Furthermore, the fact that the resulting amorphous films contain both phosphate and silicate building units (mixed-former effect) increases the conductivity to approximately the values of LiPON (1...
Lithium phosphorus oxynitride (LiPON) thin films as solid electrolytes were prepared by reactive rad...
Liquid organic electrolytes cause safety problems due to an insufficient thermal and electrochemical...
Among various solid electrolytes, the lithium-phosphorus oxynitride (Lipon) electrolyte synthesized ...
International audienceThe current commercial standard thin film electrolyte LiPON is the limiting fa...
This manuscript reports a study of the ionic conductivity of radiofrequency sputter deposited, lithi...
© 2019 Elsevier B.V. Thin film solid state Li 4 Ti 5 O 12 -based batteries are developed by using a...
International audienceLithium Phosphorus Oxynitride glass (LiPON) is the most used electrolyte for l...
International audienceLithium phosphorous oxynitride (LIPON), having an amorphous structure, was fir...
Since addition of Al in Li0.5La0.5TiO3 has enhanced ionic conductivity in bulk materials, it is impo...
This paper presents glassy films of lithium phosphorus oxynitride electrolyte with an amorphous stru...
International audienceLithium phosphorous oxynitride (LIPON), having an amorphous structure, was fir...
International audienceLithium phosphorous oxynitride ion-conducting glasses, prepared by radio-frequ...
Electrochemical stability, moderate ionic conductivity and low electronic conductivity make the lit...
Lithium phosphorus oxynitride (LiPON) thin films as solid electrolytes were prepared by reactive rad...
Liquid organic electrolytes cause safety problems due to an insufficient thermal and electrochemical...
Among various solid electrolytes, the lithium-phosphorus oxynitride (Lipon) electrolyte synthesized ...
International audienceThe current commercial standard thin film electrolyte LiPON is the limiting fa...
This manuscript reports a study of the ionic conductivity of radiofrequency sputter deposited, lithi...
© 2019 Elsevier B.V. Thin film solid state Li 4 Ti 5 O 12 -based batteries are developed by using a...
International audienceLithium Phosphorus Oxynitride glass (LiPON) is the most used electrolyte for l...
International audienceLithium phosphorous oxynitride (LIPON), having an amorphous structure, was fir...
Since addition of Al in Li0.5La0.5TiO3 has enhanced ionic conductivity in bulk materials, it is impo...
This paper presents glassy films of lithium phosphorus oxynitride electrolyte with an amorphous stru...
International audienceLithium phosphorous oxynitride (LIPON), having an amorphous structure, was fir...
International audienceLithium phosphorous oxynitride ion-conducting glasses, prepared by radio-frequ...
Electrochemical stability, moderate ionic conductivity and low electronic conductivity make the lit...
Lithium phosphorus oxynitride (LiPON) thin films as solid electrolytes were prepared by reactive rad...
Liquid organic electrolytes cause safety problems due to an insufficient thermal and electrochemical...
Among various solid electrolytes, the lithium-phosphorus oxynitride (Lipon) electrolyte synthesized ...