Anuradha Chowdhury
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Graduate Assistant
Also affiliated: National Taipei University of Technology (2021–2024); Ming Chi University of Technology (2020); Saha Institute of Nuclear Physics (2012)
Research Areas
Biomedical Subjects
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Biography and Research Information
OverviewAI-generated summary
Anuradha Roy Chowdhury's research focuses on the development and application of novel materials for photocatalysis and sensing. Her work includes the investigation of metal-free graphitic carbon nitride (g-C3N4) functionalized with sulfonic acid groups for the photooxidation of organic dyes and the photoreduction of chromium (VI). She has also explored the construction of p-n heterojunctions, such as CuFe2O4/p-g-C3N4 and BiVO4/P-g-C3N4, to enhance photocatalytic activity for organic degradation reactions under visible light. Additionally, her research has involved the use of silver-enriched MOF-derived CuFe2O4 microcubes and gold-coated substrates for ultrasensitive surface-enhanced Raman scattering (SERS) detection of organic molecules like Rhodamine 6G and explosives. Roy Chowdhury's scholarly output includes 20 publications, with an h-index of 10 and 230 citations. She has collaborated with Dylan Girodat and Divya Sapkota at the University of Arkansas at Fayetteville on several shared publications.
Metrics
- h-index: 8
- Publications: 14
- Citations: 195
Positions
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Graduate Assistant 2013–presentUniversity of Arkansas ORCID
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Project Student 2012Indian Institute of Technology Bombay Material Science ORCID
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Project Student 2011Saha Institute of Nuclear Physics Surface Physics ORCID
Selected Publications
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BPS2025 - Diamond-Blackfan anemia-associated mutations perturb uL5 helix stability and conformational ensemble (2025)
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Conformational changes of ribosomes during translation elongation resolved by molecular dynamics simulations (2024)
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Impact of Diamond-Blackfan anemia associated mutations on structural dynamics of ribosomal protein uL5 (2024)
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Faculty Publications from a Research University: The Scholarly Impact of Open Access versus Non-Open Access (2017)
Collaboration Network
Top Collaborators
- Conformational changes of ribosomes during translation elongation resolved by molecular dynamics simulations
- Impact of Diamond-Blackfan anemia associated mutations on structural dynamics of ribosomal protein uL5
- BPS2025 - Diamond-Blackfan anemia-associated mutations perturb uL5 helix stability and conformational ensemble
- Impact of Diamond-Blackfan anemia associated mutations on structural dynamics of ribosomal protein uL5
- BPS2025 - Diamond-Blackfan anemia-associated mutations perturb uL5 helix stability and conformational ensemble
- Faculty Publications from a Research University: The Scholarly Impact of Open Access versus Non-Open Access
- Faculty Publications from a Research University: The Scholarly Impact of Open Access versus Non-Open Access
- Conformational changes of ribosomes during translation elongation resolved by molecular dynamics simulations
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