DY
Dr. Tarun Yadav
International Advanced Research Centre for Powder Metallurgy and New Materials, IGDTUW, University of Delhi
About
Dr. Tarun Yadav,
Scientist,
International Advanced Research Centre for Powder Metallurgy & New Materials (ARCI)
(An Autonomous R&D Centre of Department of Science & Technology, Govt. of India),
Balapur Post, Hyderabad – 500005 India,
Email : [email protected] ; Website : www.arci.res.in
Employment
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International Advanced Research Centre for Powder Metallurgy and New Materials Scientist2026 - Present
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IGDTUW Visiting Faculty2026 - 2026
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University of Delhi Assistant Professor (Guest)2025 - 2025
Education
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University of Delhi PhD (Physics)2021 - 2025
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University of Delhi M.Sc. Physics2018 - 2020
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University of Delhi B.Sc. (Hons) Physics2015 - 2018
Projects & Funding
Projects & funding information is unavailable.
Publications (11)
- Processing, profiling and energy harvesting performance of BZT-BCT modified KNNS lead-free piezoceramics Save
- Tailored phase boundaries in KNN–barium stannate-based ceramics for high piezoelectric output and extreme condition energy harvesting Save
- Shock Wave Induced Modifications in Structural, Optical, Morphological, and Ferroelectric Properties of TGS Crystals Save
- Flexible piezoelectric nanogenerator based on Nd-ZnS nanoplates for human body movements detection and wearable electronics Save
- Comprehensive analysis of organic dye doped metal-coordinated single crystals: A study of structural, optical, thermal, dielectric, piezoelectric and mechanical characteristics Save
- Investigation of structural, optical and mechanical behaviour of pure and Cr doped L-asparagine monohydrate single crystals Save
- Shockwave induced transformations in novel KNNS-BNKT-BG piezoelectric ceramic and study the impact of shockwave for energy harvesting Save
- Multicomponent modified perovskite lead-free KNN ceramic to establish R–T phase boundary near room temperature for energy acquisition and harvesting Save
- An efficient way to grow large size single crystal of Imidazole by modified Czochralski technique and study of its optical and mechanical properties Save
- Transformation of ZnS microspheres to non-centrosymmetric nanoplates for the fabrication of flexible piezoelectric nanogenerators: Electrode surface area modification for boosting the output performance Save