Mariadoss Asha Jhonsi
B S Abdur Rahman Crescent Institute of Science & Technology, Bharathidasan University
About
Dr. M. Asha Jhonsi has received her Ph.D. (2010) from School Chemistry, Bharathidasan University, Tamil Nadu, India. Subsequently, she moved to General Electronics India, Bangalore as Post-Doctoral consultant and worked on the project of “Phosphorylated Siloaxanes as flame retardants and nanoceria as coating materials”. Dr. Asha Jhonsi is well versed in the research areas of photophysics and photochemistry of nanomaterials and quantum dots for solar cells applications. Currently she is working as Assistant Professor in the department of chemistry of Crescent Institute and handling B. Tech and Post-graduate courses for more than 10 years. She has served as a mentor/supervisor for 15 post graduates and 2 Ph.D researchers. She has an excellent contribution to science and has 45 research publications with h-index of 18. Till date she has two funded projects such as SERB-Start Up (18.5 L) and SERB-TARE (Teachers Associateship for Research Excellence (2019-2022, 18.3 L collaboration with IITM, Chennai). She served as Mentor for 02 Students Project Schemes through Tamil Nadu State Council for Science and Technology (2021-22, 2022-23). Her contributions to Crescent Institute are recognized and were awarded as “Best Young Faculty (2019) and Best Faculty, Female (2021)”. She is serving as a reviewer for several reputed journals. Her research interests include Solar cells, Sensors, Nanomaterials and waste to value added products.
Employment
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B S Abdur Rahman Crescent Institute of Science & Technology Assistant Professor (Senior Grade)2015 - Present
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B S Abdur Rahman Crescent Institute of Science & Technology Assistant Professor2011 - 2015
Education
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Bharathidasan University PhD2010 - Present
Projects & Funding
Projects & funding information is unavailable.
Publications (26)
- Tuning Electron Injection and Recombination in CdTe Quantum Dots by Ligand-Shell Engineering Save
- Biomass-derived potential nano-biomaterials: Protein binding, anti-biofilm activity and bio-imaging Save
- Nanoarchitectonics of Congo red dye to biocompatible fluorescent carbon dots for highly sensitive Fe3+ and ferritin detection Save
- Rapid colorimetric discrimination of cyanide ions – mechanistic insights and applications Save
- Pyrene based Schiff bases: Synthesis, crystal structure, antibacterial and BSA binding studies Save
- Evaluation of the anti-rheumatic properties of thymol using carbon dots as nanocarriers on FCA induced arthritic rats Save
- Fluorescent Carbon Dots Derived from Vehicle Exhaust Soot and Sensing of Tartrazine in Soft Drinks Save
- Delineating the enhanced efficiency of carbon nanomaterials including the hierarchical architecture of the photoanode of dye-sensitized solar cells Save
- IoT-enabled dye-sensitized solar cells: an effective embedded tool for monitoring the outdoor device performance Save
- Photoinduced interaction of arylamine dye with carbon quantum dots ensued from Centella asiatica Save