MB
Mahuya Bandyopadhyay
Institute of Infrastructure Technology Research and Management, Hiroshima University, Ruhr-Universität Bochum, Gifu University, Pandit Deendayal Petroleum University, University of Burdwan
Employment
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Institute of Infrastructure Technology Research and Management Associate Professor2024 - Present
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Hiroshima University Assistant Professor2016 - 2017
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Institute of Infrastructure Technology Research and Management Assitant Professor2013 - 2024
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Pandit Deendayal Petroleum University Visiting Faculty2011 - 2012
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JIS College of Engineering Head of the Department2009 - 2010
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The Maharaja Sayajirao University of Baroda Faculty of Technology and Engineering Lecturer2005 - 2007
Education
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Ruhr-Universität Bochum Dr. Rer. Nat. (Ph.D.)2001 - 2005
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Gifu University M.Tech.1999 - 2001
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University of Burdwan B.Sc. (Hons) in Chemistry1994 - 1997
Projects & Funding
Projects & funding information is unavailable.
Publications (63)
- Tetracoordinated Ni complex embedded in silica-supported heterogeneous catalyst for enhanced catalysis in CO2 sequestration Save
- Novel Hybrid Catalyst for Eco-Conscious CO2 Chemical Fixation via Cycloaddition: Zinc Complex on Base-Modified MCM-48 Save
- Host-guest chemistry of hybrid silicoaluminophosphates encapsulated Cu (II) complex: superior activity towards chemical CO2 capture Save
- Decoding the Oxygen Evolution Reaction Mechanism in a Novel Octanuclear Nickel(II) Double Cubane Cluster: Unleashing the Electrocatalytic Performance Save
- Visible‐Light‐Induced Enhanced Photodegradation of Organic Dyes Using Zn‐Embedded Silica: Experimental and Machine‐Learning Optimization of Wastewater Treatment Save
- Efficient catalytic CO2 cycloaddition reaction via zinc-immobilized amine-functionalized MCM-41 and SBA-15 mesoporous heterogeneous catalysts enhanced by machine learning insights Save
- The copper complex-based mesoporous material as an efficient, cost-effective, environment friendly sustainable adsorbent for wastewater pollutants Save
- Structural Investigation and Enriched Catalysis of Cu‐Complex‐Encapsulated Microporous Catalyst with Pragmatic Modeling for Prediction of Activity by Using Machine Learning Save
- A Tetranuclear NiII4O4 Cubane Molecular Complex as an Efficient Electrocatalyst for Oxygen Evolution Reaction: From Synthesis to Mechanistic Insights Save
- Photocatalytic degradation of organic dyes under sunlight using a mononuclear Zn complex-embedded-functionalized porous material Save