Biswajit Biswas
Physics and Astronomy · The Ohio State University
Publications
45
Citations
438
Est. group size
~7
Recurring co-author estimate
Active years
12
Publishing since 2015
This researcher works on the physical chemistry of interfaces, using laboratory techniques like vibrational sum frequency generation, Raman spectroscopy, and molecular dynamics simulations to study how water, ions, and small molecules organize at surfaces such as water-air interfaces, salt solutions, and lipid films. Recent work applies these interface-science methods to environmental questions, including how nanoplastic particles disrupt lipid membranes and affect atmospheric chemistry. The publication record also includes some unrelated collaborative projects on topics like bacteriophage therapy, mangrove ecology, and flood risk modeling, suggesting involvement in diverse interdisciplinary collaborations.
Publication output has been fairly steady at 3-5 papers per year for most of the last decade, with a sharp increase to 11 outputs in 2025, partly reflecting multiple preprint and journal versions of the same studies.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Development of synthetic bacteriophages with extended host range to overcome resistant Klebsiella pneumoniae
Scientific Reports · 2026
- Nanoplastic-Induced Disruption of DPPC and Palmitic Acid Films: Implications for Membrane Integrity
Environmental Science & Technology · 2025
- Nanoplastic–lipid interactions at marine relevant interfaces: implications for atmospheric chemistry
Environmental Science Atmospheres · 2025
- Reorganization of Water at Aqueous Aluminum Chloride (AlCl <sub>3</sub> ) Interfaces: Vibrational Sum Frequency Generation and Molecular Dynamics Simulations
The Journal of Physical Chemistry A · 2025
- Urban Flood Risk Assessment Using Machine Learning: Implications of Climate Change and Rapid Urban Development
2025
- Nanoplastic-induced Disruption of DPPC and Palmitic Acid Monolayers: Implications for Membrane Integrity
ChemRxiv · 2025
- Nanoplastic-induced Disruption of DPPC and Palmitic Acid Films: Implications for Membrane Integrity
ChemRxiv · 2025
- Re-Organization of Water at Aqueous Aluminum Chloride (AlCl3) Interfaces: Vibrational Sum Frequency Generation and Molecular Dynamic Simulation
ChemRxiv · 2025
- Thermodynamic Modeling of Osmotic Coefficients and Surface Tension of the Ferric Chloride–Water and Ferric Nitrate–Water Systems Using the Pitzer Model
Journal of Chemical & Engineering Data · 2025
- Author response for "Nanoplastic–Lipid Interactions at Marine Relevant Interfaces: Implications for Atmospheric Chemistry"
2025
- Re-Organization of Water at Aqueous Aluminum Chloride (AlCl3) Interfaces: Vibrational Sum Frequency Generation and Molecular Dynamic Simulations
ChemRxiv · 2025
- Re-Organization of Water at Aqueous Aluminum Chloride (AlCl3) Interfaces: Vibrational Sum Frequency Generation and Molecular Dynamic Simulations
ChemRxiv · 2025
- Ecological restoration at pilot-scale employing site-specific rationales for small-patch degraded mangroves in Indian Sundarbans
Scientific Reports · 2024
- Solution and Surface Solvation of Nitrate Anions with Iron(III) and Aluminum(III) in Aqueous Environments: A Raman and Vibrational Sum Frequency Generation Study
The Journal of Physical Chemistry A · 2024
- Estuarine mangrove niches select cultivable heterotrophic diazotrophs with diverse metabolic potentials—a prospective cross-dialog for functional diazotrophy
Frontiers in Microbiology · 2024
- ChemRxiv×9
- The Journal of Physical Chemistry C×5
- Physical Chemistry Chemical Physics×4
- The Journal of Physical Chemistry A×3
- Journal of Molecular Liquids×3
- Suranjan K. Paul
Physics and Astronomy · The Ohio State University
- John M. Herbert
Physics and Astronomy · The Ohio State University
- Lyudmila V. Slipchenko
Physics and Astronomy · Purdue University West Lafayette
- Sagarmoy Mandal
Physics and Astronomy · Purdue University West Lafayette
- Narendra M. Adhikari
Physics and Astronomy · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
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