Dr. Chandra Kamal Borah
Krishna Kanta Handiqui State Open University, Madhabdev University, Delhi Technological University
About
Dr. Chandra Kamal Borah is a researcher specializing in nanomaterials, photovoltaic technologies, semiconductor device modeling, and sensor development. His doctoral research focused on ultra-thin two-dimensional molybdenum disulfide (MoS₂) layers for photovoltaic applications. He completed his M.Sc. in Physics with a first-class first distinction and was awarded both the Chancellor’s Gold Medal and a gold medal in Physics for academic excellence.
Research Interests:
Nanomaterials, graphene, 2D molybdenum disulfide, photovoltaic cells, sensor technology, computational semiconductor device simulation, and synthetic diamond.
Research Skills:
Thermal CVD, HFCVD, PECVD synthesis, SCAPS-1D and AFORS-HET solar cell simulation, COMSOL Multiphysics modeling, Raman spectroscopy, UV–Vis–NIR spectroscopy, and electrochemical analysis.
Teaching & Academic Contributions:
Teaching undergraduate and postgraduate physics courses, dissertation supervision, scientific writing, preparation of self-learning study materials, curriculum development, and peer review activities for scientific journals.
Employment
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Krishna Kanta Handiqui State Open University Assistant Professor (C)2026 - Present
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Madhabdev University Guest Faculty2021 - 2025
Education
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Delhi Technological University Visiting Reserach Scholar2015 - 2018
Projects & Funding
Projects & funding information is unavailable.
Publications (15)
- Citrus cultivar identification using a computationally optimized electronic nose system and machine learning approach Save
- AFORS-HET-based simulation and optimization of ITO/p-rGO/n-cSi heterojunction solar cell for high-efficiency scalable photovoltaics Save
- Modelling and Optimization of “n–i–p” Structured CdS/MASnI3/CdTe Solar Cell with SCAPS-1D for Higher Efficiency Save
- Investigating the influence of ambient light spectrum on the thickness and band gap of halide-perovskite for indoor photovoltaic application Save
- Correlating the Nonlinear Roughening and Optical Properties of Anatase Thin Films—A Fractal Geometric Approach Save
- Recent Advances of Graphene in Solar Cell Applications Save
- A promising semiconductor 2D-MoS2: Synthesis and Characterization Save
- Numerical investigation of graphene and 2D‐MoS2 facilitated perovskite/silicon “p‐i‐n” structure for solar cell application Save
- A Highly Receptive ZnO-Based Enzymatic Electrochemical Sensor for Glucose Sensing Save
- Facile Synthesis of Vertically Aligned MoS 2 Nanosheets at Ambient Pressure Save