L. Mohan
Also known as: Loganathan Mohan
Toyohashi University of Technology, Indian Institute of Technology Madras, Anna University Chennai, National Aerospace Laboratories CSIR, Vellore Institute of Technology University
About
Dr. L. Mohan is a JSPS (Japan Society for the Promotion of Science) Post-Doctoral Researcher at Toyohashi University of Technology (TUT), JAPAN, His main research areas are nanomaterials, biomaterials, drug delivery, Bio-NEMS/MEMS, and biomedical devices. He received his Ph.D. in Nanomaterials/Biomaterials from Anna University, India, and conducted his postdoctoral research at the Indian Institute of Technology, Madras (IITM), INDIA. He was a Project Scientist in the Surface Engineering Division at National Aerospace Laboratories (CSIR-NAL), Bangalore, India. He has published more than 38 international journal papers and has four Indian patents, eight book chapters, nine proceedings, and 18 conference papers to his credit. He was awarded for Best Ph. D. Thesis, NACE, U.S.A (India Section).
Research interests
• Nanomaterials and Drug Delivery Applications
• Intracellular Delivery
• Biomaterials and Medical Devices
• Surface Modifications of Bio-metals / Corrosion analysis
• Bio-NEMS / MEMS
• Single Cell Technology
• Photoporation
• Mechonoporation
• Electroporation
• Pharmaceutics
• Vacuum systems (CVD / PVD)
Employment
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Toyohashi University of Technology JSPS International Research Fellow2019 - 2021
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Indian Institute of Technology Madras Institute Post-Doctoral Fellow2017 - 2019
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National Aerospace Laboratories CSIR Project Scientist2010 - 2016
Education
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Indian Institute of Technology Madras Post-Doctoral Researcher2017 - 2019
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Anna University Chennai Ph.D2013 - 2016
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Vellore Institute of Technology University M.Tech2007 - 2009
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Tamil Nadu Dr MGR Medical University B. Pharmacy2002 - 2006
Projects & Funding
Projects & funding information is unavailable.
Publications (98)
- Fabrication of TiO2 microspikes for highly efficient intracellular delivery by pulse laser-assisted photoporation Save
- Electrochemical fabrication of TiO2 micro-flowers for an efficient intracellular delivery using nanosecond light pulse Save
- Tailoring the Surface Functionalities of Titania Nanotubes for Biomedical Applications Save
- Metallic Nanoparticles for Biomedical Applications Save
- Can titanium oxide nanotubes facilitate intracellular delivery by laser-assisted photoporation? Save
- Physical approaches for drug delivery Save
- Microneedles: Current Trends and Applications Save
- Microfluidic Technologies for Cell Manipulation, Therapeutics, and Analysis Save
- Microfluidic Electroporation and Applications Save
- Nanosecond Pulse Laser Mediated High Efficient Intracellular Delivery Using TiO2 Nanostructures Save