About
Dr. Sayantan Sil is an Associate Professor in the Department of Basic Science and Humanities (BSH), University of Engineering & Management (UEM), Kolkata, India. He earned his Ph.D. in Materials Science (2020) from Jadavpur University, in collaboration with the Variable Energy Cyclotron Centre (VECC), Kolkata.
Dr. Sil’s research interests include nanoscience and nanomaterials, thin films and advanced functional materials for electronic and optoelectronic applications. He has published multiple research articles in reputed peer-reviewed journals and is actively involved in teaching, research supervision and academic mentoring.
Employment
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University of Engineering & Management Associate Professor2021 - Present
Education
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Jadavpur University PhD2015 - 2020
Projects & Funding
Projects & funding information is unavailable.
Publications (43)
- Elucidating structure–property relationships in Cd(ii) coordination polymers for enhanced charge transport properties and Schottky device fabrication Save
- An electrically conductive dinuclear double helicate Al(iii) complex for the fabrication of a Schottky diode Save
- Influence of cations on charge transport and Schottky properties in mesaconate-bridged isostructural 1D coordination polymers Save
- Investigating carrier mobility in hollow and mesoporous ZnSe/ZnTe heterostructures: Microscopic observations of swift charge transfer and visible-light-driven dye decomposition Save
- Positron annihilation spectroscopic studies of ferromagnetic methylammonium lead iodide perovskite Save
- Positron annihilation studies of methylammonium lead bromide perovskite Save
- Development of hierarchical copper sulfide–carbon nanotube (CuS–CNT) composites and utilization of their superior carrier mobility in efficient charge transport towards photodegradation of Rhodamine B under visible light Save
- Effect of Higher Carrier Mobility of the Reduced Graphene Oxide–Zinc Telluride Nanocomposite on Efficient Charge Transfer Facility and the Photodecomposition of Rhodamine B Save
- Exploring the studies of charge transportation of an aromatic acid based Co(II)-Metallogel scaffold fabricated Schottky device Save
- Cloaking and Quantum Stealth: The Science Behind Invisibility Save