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At higher temperatures the dielectric spectra are dominated by conductivity.
Two relaxation processes were observed in the dielectric spectra.
The space charge effect dominates the high temperature dielectric spectra.
The dielectric spectra displayed two dielectric resonance peaks at 530 and 445 THz.
The effects of the metallic substrates on the crystalline nature, energy band gap and dielectric spectra are also investigated.
Dielectric spectra were approximated with empirical Cole Cole or Havriliak Negami equations.
The dielectric spectra of the nanocomposites show several relaxation processes which are discussed in detail.
The dielectric spectra showed a good correlation with the ER performance of the ER fluid.
The effect of the morphology of the sample on the dielectric spectra is analyzed.
The dielectric spectra were also well correlated to their ER effects using an LCR meter.
Particularly, the details of the dielectric spectra and the values of the energy band gaps (Eg) are investigated.
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