A Comparative Analysis on the Crystalline Behavior, Topographical, Photoluminescence, and Leakage Current Characteristics of BiFeO3 Nanopowders and Thin Films

Author:

Venkatapathy Ramasamy1,Ramana Ramya J.2,Bharath Sabarish V. C.13ORCID,Gajendiran J.4,Durairajan A.5,Graça M. P. F.5,Valente M. A.5,Gokul Raj S.6,Ramesh Kumar G.1ORCID

Affiliation:

1. Department of Science and Humanities University College of Engineering Arni, Thatchur (Anna University) Chennai 632 326 India

2. Department of Periodontics Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Sciences Chennai 600077 India

3. Department of Science and Humanities (Physics) K.Ramakrishnan College of Technology (autonomous) Kariyamanikam Road Samayapuram, Trichy 621112 India

4. Department of Physics Vel Tech Rangarajan Dr. Sagunthala R&D Institute of Science and Technology Avadi Chennai 600062 India

5. I3N, Department of Physics University of Aveiro Portugal 3810‐193 Portugal

6. Department of Physics C. Kandaswami Naidu College for Men Chennai 600102 India

Abstract

AbstractThin films and nanocrystalline powders of BiFeO3 (BFO) are prepared from pulsed laser deposition (PLD) and sol–gel process, respectively. Their grain sizes, microstrain, morphological features, leakage current characteristics, and photoluminescence (PL) emission behavior are investigated and compared with each other. X‐ray diffraction (XRD) technique has been utilized to compute the grain sizes and crystalline strain values for the thin films and nanopowders of BFO through Williamson–Hall (W–H) plots. XRD and Raman peaks of the deposited thin film and synthesized nanopowders of BFO confirm the formation of rhombohedral unit cell character and its vibrational structure. Topographical analysis of nanopowders and thin films of BFO from scanning electron microscopy (SEM) and atomic force microscopy (AFM) measurements reveals the spherical morphology of grown particles. Suppression of emission peaks, as noticed from PL spectra for BFO nanopowders and thin film, indicates the possible electron defect level transitions due to oxygen vacancies. Leakage current density studies suggest the detectable flow of current in both study of specimen.

Funder

Fundação para a Ciência e a Tecnologia

Publisher

Wiley

Subject

Condensed Matter Physics,General Materials Science,General Chemistry

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