DHANANJAYA PANDA
Bharathiar University School of Physical Sciences, University of Delhi, Berhampur University
About
I am Dhananjaya Panda, a PhD scholar specializing in bionanoelectronics, nanomaterials, and MEMS-based biosensing technologies, with a focus on sustainable energy and environmental applications. My research integrates nanomaterials such as MoS₂ quantum dots, chitosan biopolymers, and MXene-based composites for applications in dye removal, electrochemical sensing, and advanced electronic devices.
I have hands-on experience in Systems-on-Chip (SoC) design for scientific applications, FET-based bio-protein detection, and MEMS/NEMS sensor development, supported by computational modeling using COMSOL Multiphysics and Density Functional Theory (DFT) with VASP. My work also involves structural and chemical characterization using FTIR, XRD, SEM, and electrochemical techniques such as cyclic voltammetry.
I am deeply interested in materials for carbon neutrality and circular economy, advanced semiconductor device research, and their integration into industrial applications, including AI-driven manufacturing optimization. My long-term goal is to bridge cutting-edge research with industrial needs, fostering innovations that promote sustainability in the semiconductor and materials sectors.
Employment
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Bharathiar University School of Physical Sciences Research Fellow2020 - 2021
Education
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University of Delhi Ph. D.2021 - Present
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Berhampur University M.Sc2013 - 2015
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Berhampur University B.Sc,2010 - 2013
Projects & Funding
Projects & funding information is unavailable.
Publications (12)
- Impact of Cu‐TiO2 Nanocomposite on the Physical, Mechanical, and Antimicrobial Properties of Polylactic Acid/Thermoplastic Starch Films Save
- Design and FEM analysis of split electrode SAW sensor for volatile organic compound gases based on CNT/MoS2 composite for biomarker applications Save
- MoS2/PANI composite-based photoluminescence sensor for selective sensing of dimethoate pesticide Save
- Microbial electrochemical technologies: a life cycle and technoeconomic perspective Save
- Novel Chitosan-ZnO nanocomposites derived from Nymphaeaceae fronds for highly efficient removal of Reactive Blue 19, Reactive Orange 16, and Congo Red dyes Save
- FEM Analysis of Split Electrode IDTs Designed Lithium Tantalate-Polyaniline SAW Gas Sensor Save
- PVK-grafted multiwalled carbon nanotube materials with enhanced mobility for electronic devices Save
- A review on carbon nanotube: An overview of synthesis, properties, functionalization, characterization, and the application Save
- MXene-based materials for remediation of environmental pollutants Save
- Synthesis and characterization of MgFe2O4 and MgFe2O4/rGO nanocomposites for the photocatalytic degradation of methylene blue Save