Pankaj P. Khirade
Also known as: P.P.Khirade
Shri Shivaji Science College, Shri Shivaji Science College, Amravati
About
Dr. Pankaj P. Khirade (M.Sc. Physics, Ph.D., B.Ed.) recently completed his Doctorate degree (Ph.D.) in Materials Physics from Dr. Babasaheb Ambedkar Marathwada University, Aurangabad (MS), India. His research is focused on the synthesis, characterizations and applications of nanoscale materials such as: Fer-rites, Perovskites, Composites, Glasses, Multiferroics etc. He had published a number of research articles in reputed International Journals. He is currently working as an Assistant Professor in Physics, Department of Physics, Shri Shivaji Science College, Amravati (M.S.), 444603, India.
Employment
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Shri Shivaji Science College Assistant Professor2019 - Present
Education
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Shri Shivaji Science College, Amravati Ph.D.2019 - Present
Projects & Funding
Projects & funding information is unavailable.
Publications (42)
- Gamma radiation shielding characteristics of some nitrides: a Monte-Carlo simulation study Save
- Effect of Zr4+ dopants on micro-structural and antibacterial characteristics of CuFe2O4 nanoparticles produced via sol-gel auto combustion Save
- Enhanced gas sensing characteristics of rGO-TiO2 nanocomposites: Synthesis, structural, optical characterization and sensitivity analysis for environmental monitoring Save
- Enhanced γ-radiation shielding characteristics of some emergent perovskite titanate nanoceramics: A comprehensive study of structural characteristics and radiation attenuation mechanisms Save
- Facile synthesis of graphene oxide via equivalent Hummers' method: Comprehensive characterizations and analysis Save
- Experimental, theoretical and numerical simulation-based investigations on the fabricated Cu2ZnSn thin-film-based Schottky diodes with enhanced electron transport for solar cell Save
- Fabrication of Ferrite Core Inductors Utilizing Sol-Gel-Produced La3+ Doped CoFe2O4 Nanomaterials Save
- Solvent-Free Synthesis of 1, 4 Dihydropyridines Derivatives via Hantzsch Reaction Employing MgFe2O4 MNPs: An Efficient and Recyclable Heterogeneous Catalyst Save
- Structural, microstructural and optical characteristics of rGO-ZnO nanocomposites via hydrothermal approach Save
- Structural, morphological, and electrical investigation of 50 Mrad ?-radiated Ni1-xCdxFe2O4 nanoparticles Save