About
Dr. Akhilesh Kumar Singh is an Associate Professor at the School of Materials Science & Technology. Dr. Singh joined the School of Materials Science and Technology as Assistant Professor in 2005. He completed his Ph.D. (Materials Science & Technology) in the year 2006 and M.Tech. in 2000 in Materials Technology with BHU Gold Medal from Institute of Technology, Banaras Hindu University, Varanasi. Dr. Singh has received a Master in Physics from Banaras Hindu University in 1998.
Employment
-
Indian Institute of Technology Associate Professor2005 - Present
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (127)
- Composition‐Driven Symmetry Manipulation and Correlation With Physical Properties of K0.5Na0.5NbO3–BiScO3 Ferroelectric Save
- Enhanced photodetection performance in ferroelectric-driven magnetron sputtered thin film p-Si/Ba(Pr)Ti(Mo,Nb)O3/Ag devices Save
- Temperature-Triggered Structural Boundary between Nitrogen-Doped Carbon Dots and Graphene Quantum Dots Save
- Structural analysis and bright green upconversion in singly Er3+ doped Ba0.997-xErxLa0.003TiO3 perovskite phosphor for LEDs and optical heating Save
- La₀.₅Na₀.₅TiO₃: A Wide Bandgap Semiconducting, High k Dielectric Material for Electromagnetic Interference (EMI)Shielding Applications Save
- Nano-Structured FeBO3 as a Cation Intercalating Pseudocapacitive Negative Electrode for the fabrication of Dual-Ion Aqueous Super Battery Save
- Doping-Induced Relaxor Ferroelectricity and Site Engineering in Ba1–xPr2x/3Ti1–y(Mo1/2Nb1/2)yO3 Ceramics for Enhanced Permittivity and Energy Storage Performance Save
- Band gap engineering and multicolor emission in environment friendly Dy-Ti Co-doped LiNbO3 ceramics for advanced electrical energy storage, LED and laser applications Save
- High dielectric energy storage performance of Bi(Ni0.5Zr0.5)O3 substituted Bi0.5(Na0.70K0.30)0.5TiO3-based relaxor ferroelectric ceramics Save
- Nanointerface Insights in PVDF Films with Low Loading of Nitrogen-Doped Carbon Dots for High Energy Density Storage and Harvesting Save