Anuradha Chowdhury
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Graduate Assistant
Also affiliated: Twitter (United States) (2024); Durbar Mahila Samanwaya Committee (2013); National Taipei University of Technology (2021–2024); Ming Chi University of Technology (2020); Saha Institute of Nuclear Physics (2012); Alabama Agricultural and Mechanical University (2008); University of Rajshahi (2022); Texas A&M University (2008)
Faculty Researcher
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Anuradha Chowdhury's research has focused on the development and application of novel materials for various scientific applications. Her work includes the creation of substrates for ultrasensitive surface-enhanced Raman spectroscopy (SERS) detection, such as silver-enriched MOF-derived CuFe2O4 microcubes. Chowdhury has also investigated photocatalytic materials, including CuFe2O4/p-g-C3N4 p-n heterojunctions and α-Fe2O3-NPs@AgVO3-NRs Z-scheme heterojunctions, for applications in organic degradation and reduction reactions under visible light. Further studies have explored the photo-redox properties of functionalized metal-free g-C3N4 for environmental remediation and the performance of Ni-doped MnO2 electrodes in zinc-air batteries. More recently, her research has extended to computational studies, including molecular dynamics simulations to resolve conformational changes of ribosomes during translation elongation. Chowdhury has co-authored 20 publications, accumulating 212 citations and an h-index of 10.
Metrics
- h-index: 10
- Publications: 20
- Citations: 230
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
- Conformational changes of ribosomes during translation elongation resolved by molecular dynamics simulations
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