P. Priyadarshini
University of Cambridge, Odisha University of Agriculture and Technology, Institute of Chemical Technology
About
I am a doctoral student specializing in Physics at the Institute of Chemical Technology Mumbai, India.
My research is centered on the synthesis and characterization of metal chalcogenide semiconductors, with a particular emphasis on their potential applications in optoelectronics.
Within the framework of my research titled "Metal selenide semiconductors for multifunctional applications," I am engaged in synthesizing and analyzing nanomaterials and thin films, utilizing both physical vapor deposition (specifically Thermal evaporation) and chemical synthesis techniques. My efforts are directed towards customizing their composition, alloying, and applying various post-treatment methods such as thermal annealing, laser irradiation, and ion implantation. These modifications have broadened their utilization in diverse sectors including solar cells, photodetectors, storage, biological, and coatings.
My investigations into photodetectors using chemically synthesized metal chalcogenide semiconductor nanoparticles have demonstrated exceptional white light detection capabilities with rapid sensitivity and responsivity, achieved through a simplified synthesis method, thereby presenting a promising avenue for detectors with significant potential. Additionally, my expertise in engineering heterostructure thin films using chalcogenide semiconductors in unique epitaxial patterns has facilitated the attainment of desired materialistic properties through bandgap and device engineering, thereby offering an effective approach for device applications. Moreover, my pioneering work on the in-situ study of kinetic changes in thin films during post-energy treatments has introduced a groundbreaking concept for understanding semiconductor dynamics.
My contributions to the field include the publication of ten research articles in reputable peer-reviewed journals and three review papers, elucidating the advancements and insights derived from my research endeavors.
Furthermore, I possess proficient skills in utilizing various research instruments such as Thermal evaporation unit, XRD, FESEM, UV-Vis-NIR spectrophotometer, FTIR, DSC, Contact angle measuring unit, and Photo response study.
My research interests span;
• Thin film semiconductor devices and their characterizations
• Semiconducting nanomaterials
• Quantum dots
• Solar cell and photo-detecting materials
For more insights into my research endeavors, you can refer to my profiles on Google Scholar (Priyanka Priyadarshini), ORCID (0000-0002-4228-7615), and ResearchGate (Dr. Priyanka Priyadarshini).
Thank you
Employment
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University of Cambridge Postdoctoral Research Associate2025 - 2027
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Odisha University of Agriculture and Technology Physics Lecturer2024 - 2024
Education
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Institute of Chemical Technology Ph.D.2019 - 2024
Projects & Funding
Projects & funding information is unavailable.
Publications (34)
- 2D hexagonal CuBixGa1−xSe2 nanosheets for a visible light photodetector Save
- Effect of Cu Concentration on Optimizing the Optical, Morphological, and Structural Characteristics of ZnIn2S4 Nanosheets for Photoresponse Applications Save
- 2D hexagonal CuGaSe2 nanosheets by a microwave assisted synthesis method: photoresponse and optical study for optoelectronic applications Save
- Microwave assisted synthesis of ZnIn2S4 nanoparticles: effect of power variation for photoresponse and optoelectronic applications Save
- Morphological evolution of individual microrods to self-assembled 3D hierarchical flower architectures of CuBixIn1−xSe2 for photo response applications Save
- Tuning in optoelectronic properties of In/Te bilayer heterostructure upon annealing at different temperatures: surface wettability and photo response study for photonic and solar cell applications Save
- Influence of Te replacement by Bi in In10Se70Te20-xBix films and its structural, optical, morphological, surface wettability and thermal behaviors for optoelectronic applications Save
- Zn doping induced optimization of optical and dielectric characteristics of CuInSe2 nanosheets for optoelectronic device applications Save
- Templet-free one-pot synthesis of Bi-doped ZnTe nanoflowers by cation exchange method for optoelectronic applications and antibacterial activity Save
- Switching of linear and nonlinear optical parameters in As35Se65 thin films upon annealing at both above and below Tg ( vol 126 , 910 , 2020) Save