Dr. Brajendra Singh
University of Allahabad, Indian Institute of Technology Kanpur
About
Dr. Brajendra Singh received his Ph.D degree from Department of Chemistry, Indian Institute of Technology Kanpur (IITK), INDIA in 2008. After completing M.Sc., he had joined M.Tech programme (Modern Methods of Chemical Analysis) in IIT Delhi, INDIA. Subsequently after qualifying CSIR - JRF/NET fellowship from Council of Scientific and Industrial Research (CSIR), INDIA, he joined for research programme in the area of Solid State and Materials Chemistry in IITKanpur. After completing Ph.D., he worked in Department of Physics, IIT Kanpur as postdoctoral researcher.
In November 2009, he joined as Assistant Professor and
In November 2021, he joined as Associate Professor in Centre of Material Sciences, University of Allahabad, Prayagraj (Allahabad), INDIA.
His research interests include Materials Chemistry : Perovskite Manganite Materials, Ion Conducting Materials, Hydroxyapatite based Materials and Gas/Chemical Sensing Materials.
Employment
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University of Allahabad Associate Professor2021 - Present
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University of Allahabad Assistant Professor2009 - 2021
Education
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Indian Institute of Technology Kanpur Doctor of Philosophy (Materials Chemistry)2002 - 2008
Projects & Funding
Projects & funding information is unavailable.
Publications (40)
- Enhanced sensing of acetone by Al–ZnO synthesized using microwave-assisted combustion Save
- Impact of sodium on acetone sensing behaviour of ZnO prepared by microwave-assisted combustion method Save
- Silver modified surface using the microwave-assisted combustion method for ZnO to enhanced acetone sensing performance Save
- High dielectric constant and enhanced lithium ionic conductivity in Ca doped NASICON type materials Save
- Increased lithium-ionic conductivity with Nb- and Ta-doping in garnet-structured solid electrolyte oxides Save
- Lithium ionic conductivity and structural studies of NASICON structured Li0.4Sr0.3Zr0.5Ti1.5(PO4)3 Save
- Structural, optical, microstructure, and giant dielectric behavior of parent, Cu and Sr doped La0.55Li0.35TiO3‐δ Save
- Wastewater treatment using Fe-doped perovskite manganites by photocatalytic degradation of methyl orange, crystal violet and indigo carmine dyes in tungsten bulb/sunlight Save
- Fe+3- Mn+4 and Ti+4- Mn+3 interactions effect on the structural, electronic, magnetic and magnetoelectronic properties of perovskite manganites Save
- Chemical disorder induced positive magnetoimpedance in La0.7Pb0.3Mn0.35Fe0.65O3−δ and La0.7Pb0.3Mn0.3Fe0.7O3−δ manganites Save