Rushikesh Fopase
Indian Institute of Technology Guwahati, National Institute of Technology Rourkela
About
I am an interdisciplinary researcher specializing in biomedical nanomaterials and bioceramics, with a focus on therapeutic applications such as cancer hyperthermia. My doctoral research focused on Curie temperature–tuned magnetic nanoparticles for safe hyperthermia-based cancer therapy, alongside projects in bioimaging, biosensing, hydrogels, and drug delivery.
My expertise spans nanomaterial synthesis, physicochemical and magnetic characterization, surface functionalization, and cytocompatibility evaluation. With experience in teaching and mentorship, I aim to advance translational bioengineering that bridges materials science and clinical innovation.
Employment
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Indian Institute of Technology Guwahati Junior Research Fellow2023 - 2024
Education
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Indian Institute of Technology Guwahati PhD? - 2025
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National Institute of Technology Rourkela M.Tech? - 2018
Projects & Funding
Projects & funding information is unavailable.
Publications (32)
- Additively manufactured Weaire–Phelan Ti6Al4V scaffolds for bone repair: in vitro biomechanical evaluation and osseointegration insights using MG63 osteoblast-like cells Save
- Fabrication and characterization of tannic acid-crosslinked glutenin scaffolds for wound healing and tissue engineering applications Save
- Visible-light-driven WO₃ nanomaterials for efficient degradation of distillery spentwash: Kinetics, process optimization, and real wastewater treatment Save
- Biointerface Strategies for COVID-19 Spike Protein Detection: A Surface Engineering Approach Save
- Engineered albumin hydrogel with in-situ silver oxide nanoparticles for biomedical applications Save
- Engineered Mn–Zn-doped ferrite nanomaterials: exploring magnetothermal effects for cancer treatment Save
- Synthesis of functionalized silicon quantum dots for biological detection and imaging Save
- Effect of systematic substitution of Na2O for SiO2 on devitrification and bioactivity of sol-gel derived 69.5SiO2-24.5CaO-6P2O5 ceramics Save
- Enhancement of induction heating capability of bioactive SiO2-CaO-Na2O-P2O5 glass-ceramics by selective substitution with magnetite nanoparticles Save
- Enhancement in the induction heating efficacy of sol-gel derived SiO2-CaO-Na2O-P2O5 bioglass-ceramics by incorporating magnetite nanoparticles Save