About
Dr. Arpita Dutta currently is an Assistant Professor (2010-till date), Department of Chemistry, Rishi BankimChandra Evening College, Naihati, India. She obtained her PhD from University of Calcutta, India (2010). Her research expertise lies in supramolecular chemistry, with a focus on the rational design and synthesis of short peptide-based functional materials. She works on engineering peptide-driven self-assembly through non-covalent interactions (hydrogen bonding, π–π stacking, electrostatic interactions, and metal–ligand coordination) to construct well-defined supramolecular architectures, and structure–property relationships. She is experienced in elucidating mechanistic pathways of self-organization and developing stimuli-responsive peptide systems for advanced functional applications in sensing and materials chemistry.
Employment
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Rishi Bankim Chandra Evening College Assistant Professor2010 - Present
Education
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University of Calcutta Ph. D.2005 - 2010
Projects & Funding
Projects & funding information is unavailable.
Publications (40)
- Energy transfer (EnT)-mediated [2 + 2] photocycloadditions Save
- Ninhydrin‐Derived Naphthol‐Tethered Isoindolone Frameworks: Synthesis, Crystal Structure, and Their Behavior Toward Cu2+ Detection Save
- Pyridoxal-Coupled Carbazole Schiff Base: Supramolecular Assembly, Ag+-Selective Gelation and Ionic Conductivity Save
- Synthesis, crystal structure, and Hirshfeld analysis of an ultrashort hybrid peptide Save
- Diazo Compounds Under Visible Light: Stereoselective Synthesis of Cyclic Architectures Save
- Copper–Catalyzed Construction of the Indole Core: Recent Advancements Save
- Exploitation of ninhydrin core towards spiropyranocoumarin and benzofuranyl coumarin: Synthesis, crystal structure and self-assembly Save
- Silver-Catalyzed Decarboxylative Radical Cyclizations: Developments and Insights Save
- Synthesis and crystal structure of a tripeptide comprising a centrally placed non-coded aromatic γ-amino acid Save
- Mechanochemical reaction of ninhydrin with aromatics, enols and amines: Synthesis, crystal structure and supramolecular self-assembly of cyclic and acyclic adducts Save