B. Moses Abraham
Drexel University, Universitat de Barcelona, University of Hyderabad, Acharya Nagarjuna University, University of Barcelona
About
I am a Fulbright-Kalam Climate Fellow at the A.J. Drexel Nanomaterials Institute and Department of Materials Science and Engineering, Drexel University. I received my Ph.D. in 2020 from the University of Hyderabad, India. Before joining Drexel University, I was a Postdoctoral Fellow at the University of Barcelona and the Indian Institute of Technology Kanpur. I have published nearly 80 peer-reviewed journal articles and have received several prestigious grants and awards, including the Fulbright-Kalam Climate award from the U.S. Department of State, the HPC-Europa3 award from the European Commission’s Horizon 2020, the Juan de la Cierva-Formación award from the Ministry of Spain, and the National Postdoctoral Fellowship from the Government of India. I also serve as a Climate Crisis Commission member at the International Union for Conservation of Nature (IUCN). My research focuses on employing advanced computational techniques and data-driven approaches to conduct high-throughput screening of materials for sustainable energy generation.
Employment
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Drexel University Fulbright Kalam Climate Fellow2024 - 2026
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Universitat de Barcelona Juan de la Cierva-Formación Fellow2023 - 2024
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University of Barcelona Visiting Scientist2022 - 2022
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Indian Institute of Technology Kanpur Postdoctoral Fellow2020 - 2023
Education
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University of Hyderabad Ph.D2015 - 2020
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Acharya Nagarjuna University M.Sc.,2011 - 2013
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Acharya Nagarjuna University B.Sc.,2008 - 2011
Projects & Funding
Projects & funding information is unavailable.
Publications (92)
- Pd–Bi Bimetallic Alloy on ZIF-8-Derived ZnO Semiconductor for Accelerated Photocatalytic CO2 to Methanol Production Save
- Defect-Conjugation Coupling in Sulfur and Carbon Co-doped Poly(triazine imide) for Visible-Light-Driven H2O2 Production Save
- Large-Scale Integration of Experimental and Computational Data for 2D Materials Save
- Machine Learning Toolkits and Frameworks for Materials Design Save
- Asymmetric atomic-level engineering of phosphorus-modified Cu single-atom coordination centers on carbon nitride for enhanced photocatalytic hydrogen evolution Save
- MXenes as emerging 2D materials for hydrogen generation: advances and future prospects Save
- Role of catalyst transformations, defect reconstruction, and seawater splitting under a broad solar spectrum using a MOF-derived (Cu)TiO2 model system Save
- Surface–interface engineering of single atom catalysts for solar hydrogen generation Save
- Transition-Metal Cation Intercalation in Mo₂CTₓ MXene: Intercalant-Dependent Structural Evolution Save
- Comparing Mo2CT x MXene and Ultrathin Mo2C Save