
Ph.D. Topic
Investigate the physical properties of multiferroic based composite systems for their application in memory devises.
Research Area
Condensed Matter Experiment
Ph.D. Supervisor
Prof. B Harihara Venkataraman
LinkedIn Profile
https://www.linkedin.com/in/priyanka-mitra-a959ba2a6/
p20190457@hyderabad.bits-pilani.ac.in
Research Type
Full Time
Research Year
2020
Ph.D. Status
Ongoing
ResearchGate
Google Scholar
Investigations on structural, morphological, dielectric, andferroelectric properties of BiFeO3/BiMnO3compositeceramics prepared via sol–gel synthesis route, Waseem Ahmad Wani, Priyanka Mitra, Kannan Ramaswamy, and Harihara Venkataraman, FERROELECTRICS, VOL. 615, 67–80 (2023).
Influence of the Synthesis Process on the Physical Property Characteristics of BiFeO3 Ceramics Prepared by Flux-based Molten Salt and Solid-state Reaction Route: A Comparative Study, Priyanka Mitra, N. Jahangeer and B. Harihara Venkataraman, ECS J. Solid State Sci. Technol. 13, 033002 (2024).
Phase formation, microstructural and dielectric properties of bismuth ferrite nanoceramics synthesized by low-temperature molten salt flux route, N. Jahangeer, P. Mitra, & B. H. Venkataraman, Ferroelectrics, 618(3), 683–695 (2024).
Tailoring the structural, dielectric and ferroelectric properties of the textured bismuth titanate ceramics by rare earth element substitution towards energy storage applications, Priyanka Mitra, B. Harihara Venkataraman, Ceramics International Volume 51, Issue 6, 8022-8033 (2025).
Influence of excess bismuth oxide on the structural and dielectric characteristics of textured Bi4Ti3O12 ceramics, Priyanka Mitra and B Harihara Venkataraman, IOP Conference Series: Materials Science and Engineering, 1248, 012054 (2022).