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Effect of montmorillonite filler on structural and electrical properties of polymer nanocomposite electrolytes
Authors:Dillip K. Pradhan  R. N. P. Choudhary  B. K. Samantaray  Awalendra K. Thakur  R. S. Katiyar
Affiliation:(1) Department of Physics and Meteorology, Indian Institute of Technology, Kharagpur, 721302, India;(2) Department of Physics, University of Puerto Rico, San Juan, PR 00931, USA
Abstract:Polymer–clay nanocomposites consisting of polymer (polyethylene oxide) and NaI as salt with different concentration of organically modified Na+-montmorillonite (DMMT) have been fabricated and characterized. X-ray diffraction analysis shows that the polymer–salt complexes have been intercalated into the nanometric silicate layers of DMMT. Fourier transform infrared analysis shows that the polymer structure in the clay interlayer is similar to that of the polymer–salt complexes, and there is a strong interaction between the polymer–salt complexes and clay layers. A study of surface morphology using scanning electron microscopy reveals that microstructure of composites is affected by clay addition. Complex impedance analysis was used to calculate the bulk resistance of the composites. An enhancement in the conductivity of about one order of magnitude has been observed on 5% clay addition compared to that of the polymer–salt complexes, and it decreases monotonically for higher clay concentration. The effect of clay concentration on the structural and physical properties of polymer nanocomposites is well correlated.
Keywords:Polymer–  clay nanocomposite  Complex impedance spectroscopy  XRD  Electrical conductivity
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