Submicrometer LiCoO2 films have been prepared on silicon substrates with RF sputtering and pulsed laser deposition (PLD). The electrochemical activity of both types of thin film electrodes is compared using scanning cyclic voltammetry, galvanostatic and potentiostatic intermittent titration, and electrochemical impedance spectroscopy. The RF films exhibit a axis orientation and have an accessible diffusion plane alignment, unlike the c axis oriented PLD films. The preferential orientation of the host crystal lattice toward the electrolyte solution is critical for the intercalation rate and cycling efficiency. The RF films show superior electrochemical performance and faster relaxation characteristics than the PLD films. Based on the analysi...
LiCoO₂thin films have been grown by pulsed laser deposition on stainless steel and SiO₂/Si substrate...
International audienceThis review article presents the literature survey on radio frequency (RF)-mag...
Additive‐free nanoscale LiCoO2 thin‐films deposited on Si substrates using DC sputtering show except...
Submicrometer LiCoO2 films have been prepared on silicon substrates with RF sputtering and pulsed la...
Submicrometer LiCoO2 films have been prepared on silicon substrates with RF sputtering and pulsed la...
Submicron films of LiCoO2 have been deposited on silicon and stainless steel substrates using RF spu...
Submicron films of LiCoO2 have been deposited on silicon and stainless steel substrates using RF spu...
Preferred c-axis oriented LiCoO₂ thin films were prepared on the SiO₂/Si (SOS) substrates by pulsed ...
The basic principle of rechargeable lithium batteries: the “lithium intercalation” of the positive e...
The kinetics of intercalation are discussed using a pulsed laser deposition (PLD) film electrode and...
The kinetics of intercalation are discussed using a pulsed laser deposition (PLD) film electrode and...
For the application to all-solid-state thin film batteries, LiCoO2 thin films are deposited by RF-sp...
Submicrometer LiCoO2 films were prepared with pulsed laser deposition (PLD) and rf sputtering using ...
Submicrometer LiCoO2 films were prepared with pulsed laser deposition (PLD) and rf sputtering using ...
Electrochemical impedance spectroscopy (EIS) is employed to investigate the electrochemical properti...
LiCoO₂thin films have been grown by pulsed laser deposition on stainless steel and SiO₂/Si substrate...
International audienceThis review article presents the literature survey on radio frequency (RF)-mag...
Additive‐free nanoscale LiCoO2 thin‐films deposited on Si substrates using DC sputtering show except...
Submicrometer LiCoO2 films have been prepared on silicon substrates with RF sputtering and pulsed la...
Submicrometer LiCoO2 films have been prepared on silicon substrates with RF sputtering and pulsed la...
Submicron films of LiCoO2 have been deposited on silicon and stainless steel substrates using RF spu...
Submicron films of LiCoO2 have been deposited on silicon and stainless steel substrates using RF spu...
Preferred c-axis oriented LiCoO₂ thin films were prepared on the SiO₂/Si (SOS) substrates by pulsed ...
The basic principle of rechargeable lithium batteries: the “lithium intercalation” of the positive e...
The kinetics of intercalation are discussed using a pulsed laser deposition (PLD) film electrode and...
The kinetics of intercalation are discussed using a pulsed laser deposition (PLD) film electrode and...
For the application to all-solid-state thin film batteries, LiCoO2 thin films are deposited by RF-sp...
Submicrometer LiCoO2 films were prepared with pulsed laser deposition (PLD) and rf sputtering using ...
Submicrometer LiCoO2 films were prepared with pulsed laser deposition (PLD) and rf sputtering using ...
Electrochemical impedance spectroscopy (EIS) is employed to investigate the electrochemical properti...
LiCoO₂thin films have been grown by pulsed laser deposition on stainless steel and SiO₂/Si substrate...
International audienceThis review article presents the literature survey on radio frequency (RF)-mag...
Additive‐free nanoscale LiCoO2 thin‐films deposited on Si substrates using DC sputtering show except...