AS
Aditya Singh
University of Warwick, Freie Universität Berlin, Indian Institute of Technology Delhi, University of Lucknow, University of Pennsylvania
About
I am working on 2D materials to better understand their properties for opto- and nano-electronics applications. My expertise includes the fabrication of 2D materials/heterostructures (CVD and exfoliation), thermal evaporation system, measurements using Raman/PL (4K, polarization-resolved), AFM/KPFM, probe station, etc. I enjoy generating and discussing new ideas and planning feasible solutions to relevant problems.
Employment
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University of Warwick Marie Skłodowska-Curie Postdoctoral Fellow2023 - Present
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Freie Universität Berlin Postdoctoral Researcher2022 - 2023
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University of Pennsylvania Fulbright Visiting Researcher2021 - 2021
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Institut de Physique et Chimie des Matériaux de Strasbourg Raman-Charpak Visiting Researcher2020 - 2020
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Indian Institute of Technology Delhi PhD Candidate2016 - 2022
Education
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Indian Institute of Technology Delhi PhD2016 - 2022
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University of Lucknow Master of Science2013 - 2015
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University of Lucknow Bachelor of Science2010 - 2013
Projects & Funding
Projects & funding information is unavailable.
Publications (22)
- Symmetry-Dependent Dielectric Screening of Optical Phonons in Monolayer Graphene Save
- Highly Enhanced Defects Driven Room Temperature Ferromagnetism in Mixed-phase MoS2-MoOx Films Save
- Ultraflexible and Transparent MoS2/β-Ga2O3 Heterojunction-Based Photodiode with Enhanced Photoresponse by Piezo-Phototronic Effect Save
- Valley-Polarized Interlayer Excitons in 2D Chalcogenide–Halide Perovskite–van der Waals Heterostructures Save
- Characterization of 2D transition metal dichalcogenides Save
- Flexible, Transparent, and Broadband Trilayer Photodetectors Based on MoS2/WS2 Nanostructures Save
- Cavity-Enhanced Raman Scattering from 2D Hybrid Perovskites Save
- Centimeter-Scale Synthesis of Monolayer WS2 Using Single-Zone Atmospheric-Pressure Chemical Vapor Deposition: A Detailed Study of Parametric Dependence, Growth Mechanism, and Photodetector Properties Save
- Transfer of 2D Nanostructures with Reduced Residues: Influence of Water-soluble Layer and Fabrication of Photodetector Save
- Large-Area Transfer of 2D TMDCs Assisted by a Water-Soluble Layer for Potential Device Applications Save