RV
Raviraj Vankayala
Indian Institute of Technology Jodhpur, Radoptics LLC, National Tsing-Hua University Department of Chemistry
About
I am actively involved in the development of biomedical technologies, particularly based on nanotechnology innovations, for potential clinical imaging and therapeutic applications. My research mainly involves the molecular design to engineering new generation multi-functional biomaterials and nanomedicines with unique properties. Such nanomedicines are capable to address various challenges in tackling cancer, diabetes and vascular diseases.
Employment
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Indian Institute of Technology Jodhpur Associate Professor2023 - Present
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Indian Institute of Technology Jodhpur Assistant Professor2020 - 2023
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Radoptics LLC Chief Technology Officer2017 - 2020
Education
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National Tsing-Hua University Department of Chemistry PhD2007 - 2012
Projects & Funding
Projects & funding information is unavailable.
Publications (60)
- Graphene-Carbon Nanotube Nanocomposite-Based Selective Nonenzymatic Electrochemical Detection of Ferrum Metallicum in Biological Fluid Save
- The Rapid Construction and Biological Evaluation of Densely Substituted Carbazoles Via I2/H2O‐Mediated Green Approach Save
- NIR‐I/II‐Responsive Niosomes Co‐Encapsulating Plasmonic Gold Nanorods and IR1061 for Phototherapeutic Ablation of Cancer Cells Save
- Engineering Size‐Controlled Erythrocyte‐Derived Particles for NIR‐Responsive Theranostic Applications in Oropharyngeal Carcinoma Save
- Plasmon-Enhanced Electrochromism in Au Nanorod/WO3·H2O Hybrids for High-Performance Near-Infrared Smart Windows Save
- A Decade of Borophene Nanosheets in Biomedicine: Breakthroughs and Bottlenecks Save
- ApoE3-decorated porous MnO2 nanoplatform for ROS-responsive delivery of defensamide and mitigating neuroinflammation in the Alzheimer's brain Save
- Engineering ApoE3-Targeted NIR-Responsive Liposomes for Multimodal Inhibition of Amyloid-β Aggregation and Acetylcholinesterase Activity Save
- Carboxymethyl Chitosan Delaminated Ti3C2 MXenes as a Potential Therapeutic Nano Platform to Combat Chronic Wounds Save
- Ultrasonic-assisted europium decorated cuprous oxide nanoparticles: exploring their photothermal capabilities and antioxidant properties for biomedical applications Save