PM
Dr. Preeyanghaa Mani MRSC
University of Surrey, Kyoto University, SRM Institute of Science and Technology, Amrita Vishwa Vidyapeetham Amrita Centre for Nanosciences and Molecular Medicine, Indian Institute of Technology Madras
About
MSCA Postdoctoral Fellow, JSPS Postdoctoral Researcher, PhD Nanotechnology
Employment
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University of Surrey MSCA Postdoctoral Research Fellow2025 - Present
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Kyoto University JSPS Postdoctoral Fellow/Guest Research Associate2024 - 2025
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Indian Institute of Technology Madras IITM Postdoctoral researcher2023 - 2024
Education
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SRM Institute of Science and Technology PhD Nanotechnology2020 - 2023
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Amrita Vishwa Vidyapeetham Amrita Centre for Nanosciences and Molecular Medicine M.Tech Nanomedical Science2017 - 2019
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SRM Institute of Science and Technology B.Tech Nanotechnology2013 - 2017
Projects & Funding
Projects & funding information is unavailable.
Publications (40)
- Perovskite–mixed oxide interactions to modulate the overall water splitting performance of LaNiO3–CuxO/NiO heterostructures Save
- Understanding the role of metal defects and vacancies in layered double hydroxides for photo(electro)catalytic carbon dioxide reduction Save
- Scaling up of photocatalytic systems for large-scale hydrogen generation Save
- Exploring superior photocatalytic behaviour of novel 2D/1D-NiFe2O4/ Bi2O4 hybrid photocatalyst for efficacious degradation of methylene blue Save
- Unlocking the potential of photocatalysts: Recent advances in layered double hydroxide and future outlook Save
- Development of Titanium (Ti) and Zirconium (Zr)-Based MOFs for Photocatalytic CO2 Reduction Save
- Microwave-Induced Chemical Recycling of Colored Polyester Textile Wastes Promoted by Zn[(L)Proline]2, as a Recyclable Homogeneous Catalyst Save
- Valorization of PES Textile Waste Through Glycolysis and Aminolysis Using Bimetallic ZnO and Carbon Nitride Nanocomposites Save
- Fabrication of a Z-scheme Bi2MoO6/NiFe layered double hydroxide heterojunction for the visible light-driven degradation of tetracycline antibiotics Save
- Highly Efficient Ultrasound-Driven Ti3+-Doped TiO2 with Oxygen Vacancies: A Promising Visible-Light Catalyst for Complete Sonophotocatalytic Degradation of Tetracycline Save