Dr. Aysha Parveen Raheem
SRM Institute of Science and Technology, Shizuoka University, Shizuoka Daigaku - Hamamatsu Campus, SRM Institute of Science and Technology (Deemed to be University) Research Kattankulathur
About
Dr. Aysha Parveen R is currently working as a Post Doctoral Researcher in the Nanotechnology Research Centre (NRC), SRM Institute of Science & Technology, India. She holds dual Ph.D. in Engineering from Shizuoka University, Japan and in Physics from SRM IST, India. She specializes in 2D layered functional materials, semiconductor device physics, defect chemistry, fabrication and characterization of advanced gas / photon sensors. She also has hands-on experience in thin film fabrication technologies such as mist CVD, also wide technical skill in various characterization tools such as XRD, XPS, AFM, SEM, Raman, BET, alongside software such as Origin, CasaXPS, VESTA. Dr. Aysha features 11 publications including 1 review article in high impact Q1 journals like Chemical Engineering Journal, Wiley Small Methods and presented in 13 conferences, accumulating citation score of 118, h-index: 6, i-10 index: 5. As a recognition to her research, she has been awarded with Dean’s Research Award 2025 for Excellence in Research from Shizuoka University, Japan and Dr. APJ Abdul Kalam Research Award 2025 from SRM IST, India. In addition, she has also awarded with the prestigious MEXT scholarship from the Government of Japan for her doctoral program in Japan.
Employment
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SRM Institute of Science and Technology Post Doctoral Researcher2025 - Present
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Shizuoka University Doctoral Student2022 - 2026
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SRM Institute of Science and Technology Research Scholar2020 - 2025
Education
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Shizuoka Daigaku - Hamamatsu Campus Doctoral student2022 - Present
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SRM Institute of Science and Technology (Deemed to be University) Research Kattankulathur Research Scholar2020 - Present
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Madras Christian College M.Sc2018 - 2020
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Guru Nanak College B.Sc2015 - 2018
Projects & Funding
Projects & funding information is unavailable.
Publications (11)
- Highly sensitive parts per trillion detection of microwave assisted V2O5 nano-flake sensor for hazardous NO2 Save
- Room temperature ppb detection of nitrous oxide with work function tuned K+ intercalated SnS nanorods Save
- Graphene-analogous functional materials: A review and perspective on the synthesis, properties, and special emphasis of gas sensors Save
- Mist CVD-derived ZnO hexagonal nanoflakes: impact of growth time engineering on solar-blind UV photodetection performance Save
- Fe‐Mediated Tweaking of Band Bending and Activation Energy in α‐MoO3 Nano Lamella for Enhanced NO2 Gas Detection Under Low Operating Temperature Save
- Interface engineering of 2D/2D MoS2/In2S3 heterostructure for highly sensitive NO2 detection at room temperature gas sensor Save
- Synergistic tailoring of adsorption and vacancy enrichment in lamellar stacked layers of α-MoO3 nanorods by Mg2+ for NO2 gas sensor Save
- Ultrathin layered MoS2/N-doped graphene quantum dots (NGQDs) heterostructures for highly sensitive room temperature NO2 gas sensor Save
- A silver nanoparticle (AgNP)-loaded Bi2Se3 topological insulator p-n heterojunction photodiode for a near-infrared (NIR) photodetector Save
- Oxygen vacancies mediated α-MoO3 Nano-ribbons by Cu doping for highly sensitive, selective and rapid detection of hazardous NO2 for gas sensor application Save