Title of article :
A study on the simulated diffusion-limited current transient of a self-affine fractal electrode based upon the scaling property
Author/Authors :
Shin، نويسنده , , Heon-Cheol and Pyun، نويسنده , , Su-Il and Go، نويسنده , , Joo-Young، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2002
Pages :
9
From page :
101
To page :
109
Abstract :
The power law relation I(t)∝t−α, α=(Df−1)/2 between current I and time t has been widely used to analyse current transient (chronoamperometric) behaviour during atomic/ionic diffusion towards the electrode with a fractal dimension Df, irrespective of whether the electrode has a self-similar fractal structure or at best a self-affine fractal structure. We show that the self-affine fractal dimension Df,sa (or Hurst exponent H) is not always the sufficient condition required for describing the atomic/ionic diffusion behaviour to the self-affine fractal electrode: the current transient exhibits a more negative power dependence of current on time before temporal outer cut-off of fractality with increasing morphological amplitude (roughness factor) of the self-affine fractal electrode, rather than a unique power dependence corresponding to Df,sa. It is particularly noted that the current transients from the electrodes with comparatively large amplitudes are roughly characterised by a two-stage power dependence before temporal outer cut-off of fractality. In the present work, a practical method has been suggested to interpret the anomalous current transient from the self-affine fractal electrodes with various amplitudes. This method includes the determination of the apparent self-similar scaling properties of the self-affine fractal structure by the triangulation method.
Keywords :
Current transient , Scaling property , chronoamperometry , Self-affinity , self-similarity , fractal
Journal title :
Journal of Electroanalytical Chemistry
Serial Year :
2002
Journal title :
Journal of Electroanalytical Chemistry
Record number :
1668353
Link To Document :
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