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Section I: Piezoelectrics and Photovoltaics for Energy Harvesting and Conversion

Synthesis and band-gap tuning of (Co, Bi) doped PbTiO3 for photoferroelectrics applications

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Pages 145-151 | Received 10 Sep 2017, Accepted 16 Jul 2018, Published online: 16 Apr 2019
 

Abstract

In this study, We demonstrate the development of 0.40Bi (CoyTi1-y)O3–0.60PbTiO3 (BCT-60PT) ferroelectric samples using the conventional solid-state reaction technique . Phase identification and structural characterization of BCT-60PT powders were made by X-Ray diffraction technique. Significant effect of Co concentration on the structural and optical properties of the BCT-60PT has been observed. We have investigated the variation of the band gap with calcination temperature. The band gap tuning is done by varying the doping percentage of Co (y = 0.45, 0.5, 0.55, 0.60) in 0.40Bi (CoyTi1-y) O3–0.60PbTiO3. The optical band gap is found to reduce from 2.84 eV to 1.65 eV as the Co concentration increases in BCT-60PT. The reduced band gap makes the (1 -x)Bi(Co1/2Ti1/2)O3–xPbTiO3 promising multiferroic material for photoferrovoltaics applications.

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