The Distribution of Relaxation Times (DRT) is a useful technique to provide an improved insight into the interpretation of Electrochemical Impedance Spectroscopy (EIS) data. Despite its capability to distinguish the characteristic frequencies of the processes involved in an electrochemical system, the DRT solution is an ill-posed problem that requires a regularization method. Tikhonov regularization is one of the most commonly adopted methods for DRT analysis. Nevertheless, the domain discretization, needed to solve the original continuous problem, introduces errors in DRT evaluation. This problem is quite relevant when the impedance is not sufficiently resolved at boundary frequency range (imaginary part of impedance does not approach 0), ...
In recent decades, the analysis of impedance data by their numerical transformation into the domain ...
Understanding the phenomena involved in electrode kinetics is a key factor in the solid oxide cells ...
Understanding the phenomena involved in electrode kinetics is a key factor in the solid oxide cells ...
The Distribution of Relaxation Times (DRT) is a useful technique to provide an improved insight into...
The Distribution of Relaxation Times (DRT) is a useful technique to provide an improved insight into...
The Distribution of Relaxation Times (DRT) is a useful technique to provide an improved insight into...
The distribution of relaxation time (DRT) is increasingly investigated as a novel analytical method ...
The distribution of relaxation times (DRT) analysis offers a model-free approach for a detailed inve...
Electrochemical impedance spectroscopy of batteries and fuel cells suffers from ambiguity due to ove...
A new tool for the evaluation of Distribution of Relaxation Times (DRT) from Electrochemical Impedan...
Electrochemical Impedance Spectroscopy (EIS) is a frequently used measurement technique toinvestigat...
A simple Fourier transform (FT) method is presented for obtaining a Distribution Function of Relaxat...
A simple Fourier transform (FT) method is presented for obtaining a Distribution Function of Relaxat...
In recent decades, the analysis of impedance data by their numerical transformation into the domain ...
We propose to verify the Kramers-Kronig Relations (KKR) through comparison of two versions of the Di...
In recent decades, the analysis of impedance data by their numerical transformation into the domain ...
Understanding the phenomena involved in electrode kinetics is a key factor in the solid oxide cells ...
Understanding the phenomena involved in electrode kinetics is a key factor in the solid oxide cells ...
The Distribution of Relaxation Times (DRT) is a useful technique to provide an improved insight into...
The Distribution of Relaxation Times (DRT) is a useful technique to provide an improved insight into...
The Distribution of Relaxation Times (DRT) is a useful technique to provide an improved insight into...
The distribution of relaxation time (DRT) is increasingly investigated as a novel analytical method ...
The distribution of relaxation times (DRT) analysis offers a model-free approach for a detailed inve...
Electrochemical impedance spectroscopy of batteries and fuel cells suffers from ambiguity due to ove...
A new tool for the evaluation of Distribution of Relaxation Times (DRT) from Electrochemical Impedan...
Electrochemical Impedance Spectroscopy (EIS) is a frequently used measurement technique toinvestigat...
A simple Fourier transform (FT) method is presented for obtaining a Distribution Function of Relaxat...
A simple Fourier transform (FT) method is presented for obtaining a Distribution Function of Relaxat...
In recent decades, the analysis of impedance data by their numerical transformation into the domain ...
We propose to verify the Kramers-Kronig Relations (KKR) through comparison of two versions of the Di...
In recent decades, the analysis of impedance data by their numerical transformation into the domain ...
Understanding the phenomena involved in electrode kinetics is a key factor in the solid oxide cells ...
Understanding the phenomena involved in electrode kinetics is a key factor in the solid oxide cells ...