SD
Sathish Chander Dhanabalan
Also known as: D Sathish Chander, D S Chander, S C Dhanabalan
Tyndall National Institute, Munster Technological University, University of Parma, Bharathidasan University, Aaivalayam - Dynamic Integrated Research Academy and Corporations (DIRAC)
Employment
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Tyndall National Institute Marie Curie Researcher2023 - 2025
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Munster Technological University Optoelectronic Researcher2022 - 2023
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Aaivalayam - Dynamic Integrated Research Academy and Corporations (DIRAC) Co-Director & ADI Researcher2018 - 2022
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Shenzhen University Post-Doctoral Fellow2014 - 2017
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Institute of Materials for Electronics and Magnetism - Italian National Research Council (IMEM-CNR) Early Stage Researcher - Marie Curie Fellow2011 - 2014
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Indian Institute of Technology Kanpur Project (Research) Associate2009 - 2011
Education
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University of Parma Ph.D in Science and Technology of Innovative Materials2011 - 2014
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Bharathidasan University M.Phil in Physics2007 - 2008
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University of Madras M.Sc in Physics2005 - 2007
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Bharathidasan University B.Sc in Physics2002 - 2005
Projects & Funding
Projects & funding information is unavailable.
Publications (39)
- Two‐dimensional nanostructures based ‘‐onics’ and ‘‐omics’ in personalized medicine Save
- Engineering of 2D transition metal carbides and nitrides MXenes for cancer therapeutics and diagnostics Save
- 2D GeP‐based photonic device for near‐infrared and mid‐infrared ultrafast photonics Save
- Few-layer Bismuthene: Sonochemical Exfoliation, Nonlinear Optics and Applications for Ultrafast Photonics with Enhanced Stability Save
- Few-layer Bismuthene: Sonochemical Exfoliation, Nonlinear Optics and Applications for Ultrafast Photonics with Enhanced Stability (Laser Photonics Rev. 12(1)/2018) Save
- 2D Nonlayered Selenium Nanosheets: Facile Synthesis, Photoluminescence, and Ultrafast Photonics Save
- 2D–Materials-Based Quantum Dots: Gateway Towards Next-Generation Optical Devices Save
- Emerging Trends in Phosphorene Fabrication towards Next Generation Devices Save
- Few-Layer Black Phosphorus Nanosheets as Electrocatalysts for Highly Efficient Oxygen Evolution Reaction Save
- Photonics and optoelectronics of two-dimensional materials beyond graphene Save