RAJNI VERMA
Seoul National University, The University of Melbourne, CSIR National Physical Laboratory, University of Delhi Department of Chemistry
About
I earned my PhD in 2018 from the CSIR-National Physical Laboratory, India, for the research on synthesis of nanomaterials with diversified morphologies for their application in optical and biological fields. Immediately after my PhD award, I received prestigious McKenzie Fellowship at The University of Melbourne (UoM), Australia. This is the University’s flagship Fellowship, designed to attract the best and brightest to the UoM, with a success rate of 8.7%. Through this research only fellowship, I worked in multidisciplinary area involving various fields of Science and Engineering to investigate in-vitro optical tracking of fluorescent oxide nanoparticles in various biological environments. I have expanded my field of research to hyperthermia application of nanoparticles as currently working at Seoul National University, South Korea.
Employment
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Seoul National University Postdoctoral Fellow2023 - Present
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The University of Melbourne McKenzie Postdoctoral Researcher2019 - 2023
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University of Delhi Department of Chemistry Guest Faculty2018 - 2018
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National Physical Laboratory CSIR Project Assistant2013 - 2017
Education
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CSIR National Physical Laboratory Ph.D. Chemical Sciences2015 - 2018
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University of Delhi Department of Chemistry M.Sc.2011 - 2013
Projects & Funding
Projects & funding information is unavailable.
Publications (37)
- Tuning Magnetic Anisotropy and Spin Relaxation in CoFe2O4–MWCNT Nanocomposites via Interfacial Exchange Coupling Save
- Interfacial Spin Modulation in Mwcnt/Superparamagnetic Nanocomposites and Coupled Magnetic and Microwave Spin Resonance Phenomena Save
- Phytochemically tailored green synthesised multifunctional zinc oxide nanoparticles with enhanced antimicrobial and nonlinear optical properties Save
- Publisher's Note: “Rapid millisecond heating via ferromagnetic resonance in MnFe2O4 nanoparticles” [Appl. Phys. Lett. 124, 112414 (2024)] Save
- Augmented magnetic nanoparticle assimilation in rGO sheets for tailored static and dynamic magnetic properties in surface functionalized Co0.8Zn0.2Fe2O4 nanoferrite–rGO hybrid structures Save
- Multifaceted properties of TiO2 nanoparticles synthesized using Mangifera indica and Azadirachta indica plant extracts: antimicrobial, antioxidant, and non-linear optical activity investigation for sustainable agricultural applications Save
- Rapid millisecond heating via ferromagnetic resonance in MnFe2O4 nanoparticles Save
- Real-time, label-free detection and identification of bacteria through non-invasive optical imaging Save
- Recent Advancements in Plant- and Microbe-Mediated Synthesis of Metal and Metal Oxide Nanomaterials and Their Emerging Antimicrobial Applications Save
- Detection and identification of amino acids and proteins using their intrinsic fluorescence in the visible light spectrum Save