Based on the supposition related to fractal nature of transport processes in ion-conducting materials, an expression for the low-frequency ac conductivity dependence was derived. This expression for the ac conductivity generalizes the power-law dependence and gives a possibility to take into account the influence of the electrode polarization effect. The ac conductivity expression obtained is in excellent agreement with experimental data for a wide frequency range. © 2014 American Physical Society
Alternating current conduction in disordered solids is discussed, from a general point of view. As r...
In the present work, we provide broadband dielectric spectra showing strong electrode polarization e...
Models for the ac conductivity of disordered solids are reviewed. The difficulty of these models wit...
Based on the supposition related to fractal nature of transport processes in ion-conducting material...
Based on the supposition related to fractal nature of transport processes in ion-conducting material...
Based on the supposition related to fractal nature of transport processes in ion-conducting material...
The important effects of electrode polarization on the conductivity of ionic materials are illustrat...
The resistance ΔR, which exists at the electrode-electrolyte interface and is dependent to the frequ...
A theory for the frequency dependence of ionic conductivity of an electrolyte solution is presented....
A theory for the frequency dependence of ionic conductivity of an electrolyte solution is presented....
The power law dispersion of the conductivity in most ion-containing oxide glasses appears to be univ...
The generalized Jonschers law for complex conductivity (derived earlier) is tested on available expe...
The generalized Jonschers law for complex conductivity (derived earlier) is tested on available expe...
The generalized Jonschers law for complex conductivity (derived earlier) is tested on available expe...
Electrode polarization appears self-similar in time and occurs even when the geometrical electrode s...
Alternating current conduction in disordered solids is discussed, from a general point of view. As r...
In the present work, we provide broadband dielectric spectra showing strong electrode polarization e...
Models for the ac conductivity of disordered solids are reviewed. The difficulty of these models wit...
Based on the supposition related to fractal nature of transport processes in ion-conducting material...
Based on the supposition related to fractal nature of transport processes in ion-conducting material...
Based on the supposition related to fractal nature of transport processes in ion-conducting material...
The important effects of electrode polarization on the conductivity of ionic materials are illustrat...
The resistance ΔR, which exists at the electrode-electrolyte interface and is dependent to the frequ...
A theory for the frequency dependence of ionic conductivity of an electrolyte solution is presented....
A theory for the frequency dependence of ionic conductivity of an electrolyte solution is presented....
The power law dispersion of the conductivity in most ion-containing oxide glasses appears to be univ...
The generalized Jonschers law for complex conductivity (derived earlier) is tested on available expe...
The generalized Jonschers law for complex conductivity (derived earlier) is tested on available expe...
The generalized Jonschers law for complex conductivity (derived earlier) is tested on available expe...
Electrode polarization appears self-similar in time and occurs even when the geometrical electrode s...
Alternating current conduction in disordered solids is discussed, from a general point of view. As r...
In the present work, we provide broadband dielectric spectra showing strong electrode polarization e...
Models for the ac conductivity of disordered solids are reviewed. The difficulty of these models wit...