DP
DNYANDEO PAWAR
CENTRE FOR MATERIALS FOR ELECTRONICS TECHNOLOGY (C-MET), A SOCIETY UNDER MEITY, GOI, UNIVERSITÀ CAMPUS BIO-MEDICO DI ROMA, DEFENCE INSTITUTE OF ADVANCED TECHNOLOGY (DIAT), DRDO, SHENZHEN UNIVERSITY
About
Dr. Dnyandeo Pawar is currently working as a Scientist at Centre for Materials for Electronics Technology C-MET (A scientific society under Ministry of Electronics and Information Technology (Meity), Government of India).
His research interests are focused on:
1. Optical fiber interferometry
2. Photonics devices
3. Optoelectronic devices
4. Semiconductor based devices
Employment
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CENTRE FOR MATERIALS FOR ELECTRONICS TECHNOLOGY (C-MET), A SOCIETY UNDER MEITY, GOI SCIENTIST2023 - Present
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UNIVERSITÀ CAMPUS BIO-MEDICO DI ROMA Postdoc fellow2022 - 2023
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SHENZHEN UNIVERSITY Postdoc Fellow2019 - 2022
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CSIR CENTRAL SCIENTIFIC INSTRUMENTS ORGANISATION CSIR-Nehru Science Post-Doc Fellow2018 - 2019
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INDIAN INSTITUTE OF SCIENCE EDUCATION AND RESEARCH MOHALI Post-Doc Fellow2017 - 2018
Education
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DEFENCE INSTITUTE OF ADVANCED TECHNOLOGY (DIAT), DRDO PhD2013 - 2018
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INDIAN INSTITUTE OF TECHNOLOGY KHARAGPUR M. Tech. (Solid State Tehchnology)2011 - 2013
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SAVITRIBAI PHULE PUNE UNIVERSITY M. Sc. (Physics)2007 - 2009
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SAVITRIBAI PHULE PUNE UNIVERSITY B. Sc.2003 - 2006
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MHRD GATE EXAM (PHYSICS)
Projects & Funding
Projects & funding information is unavailable.
Publications (45)
- Tunable Gas-Sensing Properties of Three-Dimensional, Hollow, and Porous In2O3-Based Chemiresistive Sensors for Isoprene Detection: Studies by Modulating the Size of Polystyrene Templates Save
- Correction: Diffuse reflectance-based spectroscopic technique for real-time estimation of localized blood oxygenation parameters from human fingertips: a preliminary study Save
- Enhanced sensitivity, selectivity, and stability of polystyrene templated p-Cr2O3/n-In2O3 heterojunctions-based chemiresistive sensors for isoprene detection Save
- Flame Retardant Materials: Applications in Microwave-Based Sensors Save
- Tunable Gas-Sensing Properties of Three-Dimensional, Hollow, and Porous In2O3-Based Chemiresistive Sensors for Isoprene Detection: Studies by Modulating the Size of Polystyrene Templates Save
- Enhanced sensitivity, selectivity, and stability of polystyrene templated p-Cr2O3/n-In2O3 heterojunctions-based chemiresistive sensors for isoprene detection Save
- Highly sensitive, selective, and ppb level detection of NO2 gas using SnSe2 micro-flower, SnO2/SnSe2, and Au-SnO2/SnSe2 heterojunctions Save
- Quantum-Limited Microwave Amplifiers Save
- Real-time estimation of blood oxygenation parameters from human foot sole during leg elevation: A preliminary study with diffuse reflectance spectroscopy Save
- Polymeric PEI/PEG Coated Optical Fiber Fabry-Perot Interferometer for CO 2 Detection Save