Dielectric studies and AC conductivity of piezoelectric barium titanate ceramic polymer composites
Изучение диэлектрических свойств и переменного тока (AC) проводимости пьезоэлектрических керамико‑полимерных композитов на основе титаната бария
2019-06-17
SCID: 54.1/5jwuyrhh
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AC conductivityBT/polyvinyl alcoholbarium titanatedielectric constantpiezoelectric composites
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Abstract (AI)
In this work, ceramics barium titanate (BT) polymer composites were prepared with BT/polyvinyl alcohol (PVA) having a ceramic concentration of 10, 30, and 50% by weight using solution casting method. The prepared thin film samples were characterized by X-ray diffraction for phase analysis. Scanning electron microscope (SEM) studies on composite films revealed ceramic crystallites are well dispersed in the polymer matrix. The dielectric constant ( ε r ) and the AC conductivity at room temperature and at different frequencies (100 Hz–5 MHz) of the piezoelectric composites with different concentrations were investigated. The result shows that the dielectric constant of ceramic-PVA composites was found to increase as ceramic concentration increases and the dielectric loss tangent decreased with increasing concentration. AC conductivity of the composites increased with increasing frequency.
Key Findings
1
AC conductivity of the composites increases with increasing frequency (100 Hz–5 MHz) at room temperature.
2
BT/PVA composite films were successfully prepared with 10%, 30%, and 50% ceramic by weight using solution casting.
3
Dielectric constant (εr) of the composites increases with increasing BT ceramic concentration.
4
Dielectric loss tangent decreases as BT ceramic concentration increases.
5
X-ray diffraction confirmed phase composition and SEM showed ceramic crystallites are well dispersed in the polymer matrix.
Research Object
Barium titanate (BT) ceramic–polyvinyl alcohol (PVA) composite thin films with 10, 30, and 50 wt% ceramic loading
Research Subject
Dielectric properties (relative permittivity and loss tangent) and AC electrical conductivity as functions of ceramic concentration and frequency (100 Hz–5 MHz) at room temperature
Publication Details
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2019-06-17
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