Banchhanidhi Prusti
Clarkson University, National Institute for Materials Science, Birla Institute of Technology & Science Pilani - Hyderabad Campus, Sambalpur University
About
Dr. Banchhanidhi Prusti received his Master’s degree in Chemistry, with a specialization in Organic Chemistry, from Sambalpur University, Odisha, India, in 2015. He earned his Ph.D. in 2022 from the Birla Institute of Technology and Science (BITS)-Pilani, Hyderabad Campus, where he conducted research under the guidance of Prof. Manab Chakravarty. His doctoral work focused on the design and synthesis of conformationally twisted small molecules for applications in fluorescent chemosensing and stimuli-responsive materials. Following his Ph.D., he joined the National Institute for Materials Science (NIMS), Japan, as a Postdoctoral Researcher, where he worked on UV-vis-to-NIR switching electro(fluoro)chromic systems for smart window applications. Dr. Prusti is currently a Postdoctoral Research Associate at Clarkson University, Potsdam, New York, where his research explores stimuli-responsive tunable mechanophores and chemiluminescent systems.
Employment
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Clarkson University Postdoctoral Research Associate2025 - Present
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National Institute for Materials Science Postdoctoral2022 - 2024
Education
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Birla Institute of Technology & Science Pilani - Hyderabad Campus Ph.D.2017 - 2022
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Sambalpur University M.Sc.2013 - 2015
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Rural Institute for Higher Studies (FM University) Bachelor Degree (B.Sc.)2010 - 2013
Projects & Funding
Projects & funding information is unavailable.
Publications (29)
- Tuning Solid‐State Emissions via Twists and Turns in Polymorphic Self‐ and Cross‐Coupled Dianthrylethenes Save
- Easy Access to Vinylene-Linked Conjugated Homopolymers from Phosphonates via an O2-Mediated Aldehyde-Free Strategy Save
- Multiphase detection of crucial biological amines using a 2,4,6-tristyrylpyrylium dye Save
- Supramolecular AIE-Active Luminogens Save
- Pixel-Level Image-Based Analysis of Spatial Kinetics and Resistance Variation in a Large-Area Electrochromic Device Save
- Triple-Band Electrochromic Switching Among Visible (400–750 nm), NearIR-I (750–1000 nm), and NearIR-II (1000–1600 nm) Regions with Triple-Redox-Active Metallosupramolecular Polymers Save
- Microwave‐Assisted Quick Synthesis of Ru(II)‐Based Metallosupramolecular Polymer for Improved Electrochromic Properties Save
- Vinylene‐Linked Conjugated Microporous Polymer Decorated with Electron‐Rich Units: A Single‐Component White Light Emitting Device Save
- Solution and Solid-State Emissive Organophosphonates with High-Contrast Reversible Mechanofluorochromism: Beyond the Classical Frameworks Save
- Concentration-Guided Visual Detection of Multiphase Aliphatic Biogenic Amines through Amine–Phenol Recognition Using a Dual-State Emitter Save