Summarization: In order to assess the effect of the scan rate on the Li+ ion diffusion coefficient as calculated from cyclic voltammetry (CV), a series of CV experiments at various rates (namely 2, 5, 10, 20 and 50 mV/s) has been carried out for the same WO3 film prepared by electron gun deposition at room temperature. The diffusion coefficient (D) for lithium ion intercalation into the WO3 film, calculated from the Randles–Sevcik equation has been compared to that calculated by the Galvanostatic Intermittent Titration Technique (GITT), carried out on the same WO3 film. It has been found that at high scan rates (above 2 mV/s) the Randles–Sevcik method tends to grossly overestimate diffusion coefficient, possibly due to the occurrence of lar...
The use of AC impedance spectroscopy for kinetic study of the ion intercalation into WO films is rev...
Lithium insertion into amorphous Formula films prepared by the electron beam evaporation technique w...
Lithium insertion into amorphous Formula films prepared by the electron beam evaporation technique w...
We report a series of electrochemical analysis of homogeneous a-LixWO3 films of 400 nm thickness pre...
We report a series of electrochemical analysis of homogeneous a-LixWO3 films of 400 nm thickness pre...
We report a series of electrochemical analysis of homogeneous a-LixWO3 films of 400 nm thickness pre...
We report a series of electrochemical analysis of homogeneous a-LixWO3 films of 400 nm thickness pre...
We report a series of electrochemical analysis of homogeneous a-LixWO3 films of 400 nm thickness pre...
The small signal a-c impedance of the cell Li]LiAsF6 (0.75M) in propylene carbonatel Lip V~O3 thin f...
Electrochemical analysis of a-LixWO3 films of 400 nm thick prepared by electron beam evaporation tec...
Electrochemical analysis of a-LixWO3 films of 400 nm thick prepared by electron beam evaporation tec...
Electrochemical analysis of a-LixWO3 films of 400 nm thick prepared by electron beam evaporation tec...
This work shows how the combination of quasi-equilibrium (chronopotentiometry) and kinetical measure...
This work shows how the combination of quasi-equilibrium (chronopotentiometry) and kinetical measure...
This work shows how the combination of quasi-equilibrium (chronopotentiometry) and kinetical measure...
The use of AC impedance spectroscopy for kinetic study of the ion intercalation into WO films is rev...
Lithium insertion into amorphous Formula films prepared by the electron beam evaporation technique w...
Lithium insertion into amorphous Formula films prepared by the electron beam evaporation technique w...
We report a series of electrochemical analysis of homogeneous a-LixWO3 films of 400 nm thickness pre...
We report a series of electrochemical analysis of homogeneous a-LixWO3 films of 400 nm thickness pre...
We report a series of electrochemical analysis of homogeneous a-LixWO3 films of 400 nm thickness pre...
We report a series of electrochemical analysis of homogeneous a-LixWO3 films of 400 nm thickness pre...
We report a series of electrochemical analysis of homogeneous a-LixWO3 films of 400 nm thickness pre...
The small signal a-c impedance of the cell Li]LiAsF6 (0.75M) in propylene carbonatel Lip V~O3 thin f...
Electrochemical analysis of a-LixWO3 films of 400 nm thick prepared by electron beam evaporation tec...
Electrochemical analysis of a-LixWO3 films of 400 nm thick prepared by electron beam evaporation tec...
Electrochemical analysis of a-LixWO3 films of 400 nm thick prepared by electron beam evaporation tec...
This work shows how the combination of quasi-equilibrium (chronopotentiometry) and kinetical measure...
This work shows how the combination of quasi-equilibrium (chronopotentiometry) and kinetical measure...
This work shows how the combination of quasi-equilibrium (chronopotentiometry) and kinetical measure...
The use of AC impedance spectroscopy for kinetic study of the ion intercalation into WO films is rev...
Lithium insertion into amorphous Formula films prepared by the electron beam evaporation technique w...
Lithium insertion into amorphous Formula films prepared by the electron beam evaporation technique w...