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Research Article Open access CC BY 4.0

Dielectric Behavior of Paint/PZT Nanocomposite Films

Ashok K. Batra, Almuatasim Alomari, Mychal Thomas

Current Journal of Applied Science and Technology · pp. 213–222 · Published 2 Feb 2015

10.9734/BJAST/2015/15499

Abstract

This article presents, for the first time, the detailed functionality of 0-3 Paint/PZT composite films concerning their dielectric and electrical transport properties. Ferroelectric Paint: Lead Zirconate Titanate (Paint/PZT) composite films have been fabricated by the conventional cost effective paint brushing technique. The dielectric parameters of the composite films were calculated by the measurement of capacitance and dielectric loss. The properties investigated include, dielectric constants, ε' and ε'' as a function of temperature, frequency and composition. From the foregoing parameters, it is indicated that the dielectric constant and A. C. conductivity (σAC) increase with increase of filler content, temperature and frequency, implying functionality of the films. The results reveal that σAC obeys the relation σAC = Aωs, and exponent s, was found to decrease by increasing the temperature. It was found that, the correlated barrier hopping (C. B. H.) is the dominant conduction mechanism in nanocomposite films fabricated.

Dielectric composites pzt paint

Cited by 5

Dielectric Parametric Study in Electrospun PLZT/PVDF Nanocomposite Membranes

James Sampson, Sharvare Palwai, A. Batra · Nanotechnology & Applications · 2022

On the mechanisms of DC conduction in electrospun PLZT/PVDF nanocomposite membranes

James Sampson, A. Batra, M. Edwards · Journal of Materials Science · 2022

Lanthanum-modified lead zirconate titanate based paint for sensor and energy harvesting applications

B. B. Bohara, A. Batra, Christopher R. Bowen · Journal of Materials Science: Materials in Electronics · 2018

Mechanisms of DC conduction in smart PMN–PT/paint nanocomposite films

A. Batra, B. B. Bohara, J. Mills · Journal of Materials Science: Materials in Electronics · 2017

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