Bramha P Pandey
Madan Mohan Malaviya University of Technology, GLA University, Indian School of Mines, GLAITM, Mathura(UP)
About
I am interested in the applications of computer simulation of the atomic scale to the nano scale prediction and explication of electronic, optical, thermoelectric and sensing properties of bulk binary and its alloy semiconductors along with 1D and 2D structures of nano-scale semiconductors which are promising materials for light emitting diodes (LEDs), laser diodes (LDs), frequency conversion, solar cell devices, gases and biomolecules sensing applications. Other functions such as complex materials and nanostructures, phase stability under extreme conditions, amorphous and poorly crystalline materials, and potential materials with not-yet-developed fabrication methods can be investigated with the help of computer simulation. Any problem that can be approached with the currently available methods is welcome, but I am mostly interested in problems where the combination of experiment and simulation are needed to obtain answers. I have expertise in calculations of electronic structure, molecular dynamics, elastic properties, phonons calculation, optical and thermal properties calculations of novel materials and devices made through these encouraging 1D, and 2D materials.
Employment
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Madan Mohan Malaviya University of Technology Assistant Professor2017 - Present
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GLA University Assistant Professor2010 - 2017
Education
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Indian School of Mines Ph.D2010 - 2015
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Indian School of Mines M.Tech2008 - 2010
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GLAITM, Mathura(UP) B.Tech2004 - 2008
Projects & Funding
Projects & funding information is unavailable.
Publications (38)
- Study of catalytic behaviour for TM (Mn, Fe, Co, Cu, Ni, Zn)-doped MoSe2 monolayer using first-principles DFT approach Save
- Theoretical study of 2D Janus MoSSe as anode materials for Na-ion batteries with minimal secondary issues Save
- Study of ZnO nanorod-based lead-free perovskite solar cell using AZO as a buffer layer Save
- PCF-Based Sensors for Biomedical Applications: A Review Save
- D-shaped dual-core photonic crystal fiber–based sensor for the detection of fluid analytes Save
- Study of H2S, CO, and SO2-based nano-gas sensors using pristine and Pt-Doped WS2 monolayer Save
- Improved gas sensing properties of copper-doped MoSe2 monolayers: a first-principles study on CO2 and NO2 adsorption Save
- A highly sensitive photonic crystal fibre biosensor for early malaria detection via RBC variation monitoring Save
- Design and Analysis of a Double D-Shaped Dual-Core PCF Sensor for Detecting Biomolecules in the Human Body Save
- Theoretical Insights of the Photocatalytic and Hydrogen Storage Ability of Two-Dimensional (2-D) MoSe (MX) and MoSSe (MXY) ( = Se, = S) ML Using DFT Study Save