Bidyut Saha
Also known as: In the list of World’s Top 2% Scientists for the year 2025, 2024 & 2023 in Chemical Physics (Organic Chemistry), Associate Editor: Chemistry Africa (Springer), Editorial Board Member: Research on Chemical Intermediates (Springer), Editorial Board Member: Vietnam Journal of Chemistry (Wiley), Editorial Board Member: Combinatorial Chemistry & High Throughput Screening (BENTHAM SCIENCE)
The University of Burdwan, The University of British Columbia Department of Chemistry, Visva-Bharati University, Visva-Bharati
About
Professor Bidyut Saha, FRSC (London), eldest son of Haradhan Saha and Arati Saha, is an internationally recognized chemist listed among the World's Top 2% Scientists (2023–2025) in Chemical Physics (Organic Chemistry) and ranked within the top 0.05% globally in Hexavalent Chromium Chemistry (ScholarGPS, 2024). He has also been independently verified and ranked among the World's Top 5% Scientists in the 2025 SciRank Global Registry. He currently serves as Associate Editor of Chemistry Africa and as an Editorial Board Member of Research on Chemical Intermediates and the Vietnam Journal of Chemistry. He is a recipient of the Springer Nature Editor of Distinction Award (2025) and the Publons Top Peer Reviewer Award (2019).
Professor Saha has contributed to 11 United Nations Sustainable Development Goals (SDGs) through impactful teaching, research, innovation, student mentoring, community outreach, and sustainable development initiatives.
Scientific contributions on hexavalent chromium, Nickel & Vanadium directly cited in official public health benchmarks and groundwater management standards by the EFSA, USGS, NMED, BEU Alm. del., New Zealand (Ministry for Primary Industries Technical Paper No: 2019/08) & Brazil.
He earned his PhD from Visva-Bharati University under the supervision of Professor Asim K. Das and subsequently completed postdoctoral research at the University of British Columbia, Canada, under Professor Chris Orvig as a BOYSCAST Fellow. He has successfully supervised 21 PhD scholars and two postdoctoral researchers and is currently guiding 10 doctoral students, reflecting his sustained commitment to advanced research training, academic excellence, and mentorship.
Employment
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The University of Burdwan Professor (Full)2017 - Present
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The University of Burdwan Associate Professor2014 - 2017
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The University of Burdwan Assistant Professor2005 - 2014
Education
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The University of British Columbia Department of Chemistry PDF2009 - 2010
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Visva-Bharati University MSc1996 - 1998
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Visva-Bharati University BSc (H) in Chemistry1993 - 1996
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Visva-Bharati PhD? - 2007
Projects & Funding
Projects & funding information is unavailable.
Publications (265)
- Fabrication of a Semiconducting Supramolecular Nickel(II)-Based Metallogel as an Efficient Active Material for Nonvolatile Memory Applications Save
- Micellization of the CTAB in the Absence and Presence of Isoniazid in Alcoholic Media: Conductometric, Surface Tension, Viscosity, and Volumetric Approach Save
- Biosurfactants for a Sustainable Textile Industry Save
- Arsenic Contamination in Water: Occurrence, Impact, and Remediation Strategies Save
- Design and formulation of saponin-based, mustard oil-derived, extra stable oil-in-water emulsion: exploration of its antimicrobial activity Save
- A supramolecular semiconducting nickel(ii)-metallohydrogel with dual antimicrobial and micro-electronic device applications. Save
- Investigating the potent antimicrobial properties of a supramolecular Zn(ii)-metallogel formed from an isophthalic acid-based low molecular weight gelator. Save
- Unlocking the Catalytic Efficacy of Cationic–Nonionic Mixed Micellar Scaffolds for Oxidative Transformation: Influence of Nonionic Surfactant Tailoring Save
- Asymmetric Naphthalene Monoimide-Based Semiconducting Zn(II)-Supramolecular Metallohydrogel: A Multifunctional Material for Antibacterial and Optoelectronic Applications. Save
- Development of a Bioactive Supramolecular Cobalt(II)-Metallogel for Antimicrobial and Semiconducting Microelectronic Device Applications. Save