Manas Ranjan Sahoo
GITAM: (Deemed to be University), GITAM Deemed to be University, Utkal University, National Institute of Technology Rourkela
About
I am Manas Ranjan Sahoo, currently a research scholar at Cryomagnetism lab, Department Of Physics and Astronomy, NIT Rourkela, INDIA. I am working under the guidance of Prof. Prakash Nath Vishwakarma in the field of magnetoelectric. Recently, I submitted my Ph.D. thesis entitled 'Tailoring the magnetoelectric properties of SrFe12O19 via partial substitution of Bi and Mn' for evaluation.
During my Ph.D., I mainly studied the structural, magnetic, electrical, magnetoelectric, and magnetotransport properties of SrFe12O19 and its derivatives. My experimental skill includes crystal/magnetic structural study by XRD/ND, lattice dynamic study by Raman spectroscopy, X-ray photoelectron spectroscopy, static and dynamic electrical study, magnetic measurement by vibrating sample magnetometer, and magnetoelectric measurement techniques. I have also tried thin film deposition at UGC-DAE Indore but failed due to limited time.
Employment
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GITAM: (Deemed to be University) Assistant Professor2023 - Present
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GITAM Deemed to be University Assistant Professor2023 - Present
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National Institute of Technology Rourkela Ph.D.2016 - Present
Education
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Utkal University Bachelor Degree2009 - 2012
Projects & Funding
Projects & funding information is unavailable.
Publications (34)
- Critical exponent study of the hexagonal Sr1-xBixFe12O19 compound Save
- Investigation of Structural Changes in Bismuth Substituted SrFe12O19 Compound Using In-Situ Raman Spectroscopy Save
- Synthesis, characterization, and thermal stability of zirconia-toughened alumina composites for high-temperature applications Save
- Simple pyrolysis synthesis of multi-walled carbon nanotubes as a highly stable electrode material for supercapacitor applications Save
- Sm substitution induced spin reorientation and stabilization of double perovskite structure resulting in enhanced magnetoelectricity in LaYFe2O6 Save
- Energy-Harvesting Performance in a LaYFe2O6/P(VDF-HFP) Nanocomposite by Boosting the Magnetoelectric Effect Save
- Manganese substitution induced magnetic transformation and magnetoelectricity in SrFe12O19 Save
- Display of converse and direct magnetoelectric effect in double perovskite LaYFe2O6 Save
- Towards room-temperature and above magnetoelectricity in CoFe2O4/Cr2O3 core/shell nanoparticles Save
- Magnetic and electrical transport studies of polycrystalline Sr1− x Bi x Fe12O19 (x = 0, 0.01, and 0.02) Save