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Ahin Roy
Indian Institute of Technology Kharagpur, Trinity College Dublin, Indian Institute of Science, Ramakrishna Mission Residential College, Narendrapur (University of Calcutta)
About
Materials scientist with a combinatorial expertise in DFT-based computation, wet chemical synthesis and aberration-corrected scanning transmission electron microscopy to understand and engineer nanomaterials for specific applications. Topical research interest lies in materials chemistry based nanotechnology applicable to the fields of energy, catalysis and electronic devices.
Employment
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Indian Institute of Technology Kharagpur Assistant Professor2022 - Present
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Trinity College Dublin Research Fellow2019 - 2021
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Indian Institute of Science Research Associate (visiting scientist)2017 - 2019
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Kyushu University JSPS Postdoctoral Researcher2015 - 2017
Education
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Indian Institute of Science Ph. D2012 - 2015
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Indian Institute of Science M.S2009 - 2012
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Ramakrishna Mission Residential College, Narendrapur (University of Calcutta) B.Sc (Hons)2006 - 2009
Projects & Funding
Projects & funding information is unavailable.
Publications (77)
- Experimental and DFT insights into phase-dependent performance of NiIn1-xSnx (x=0.5 and 0.8) intermetallic catalysts for acetylene hydrogenation Save
- Composition-driven transition from ferromagnetic to spin glass ground state in Ni-substituted γ-brass-type phases Fe3–xNixZn10 Save
- Experimental and DFT insights into the phase-dependent performance of NiIn1−xSnx (x = 0.5 and 0.8) intermetallic catalysts for acetylene hydrogenation Save
- A tough and stretchable, mechanically strong DES-gel with adjustable mechanical performance governed by copolymerization-driven phase separation and hydrogen bonding interactions for energy harvesting applications Save
- Hierarchically Oriented Anisotropic Nanoscale Hydrogels with Enhanced Strength and Conductivity via Metal–Ligand Interactions and Salt-Soaking Strategy for Sensing and Energy-Storage Applications Save
- Cover Feature: Deciphering Interfacial Charge Transfer Phenomena at Nickel Nanocluster–Oxide Interface toward Augmented Efficacy in Electrochemical Water Splitting (Small Struct. 3/2026) Save
- Synergistic Charge Redistribution in a Dual‐Atomic Fe−CoN 6 on Nanofiber With Fe−N Site Preference of Intermediates Compared to Pristine Fe Single Atoms for Oxygen Redox in Zinc‐Air Battery Save
- Deciphering Interfacial Charge Transfer Phenomena at Nickel Nanocluster–Oxide Interface toward Augmented Efficacy in Electrochemical Water Splitting Save
- Ferromagnetic Cluster Glass Behaviour in the γ-Brass Type Phase- Fe2Zn10Ni1 Save
- Welding 2D Semiconducting Crystals by Covalent Stitching Grain Boundaries in WS2 Save