Avishek Dey
CUNY Advanced Science Research Center, Japan Society for the Promotion of Science, University of Delaware
About
I obtained my B.Sc. and M.Sc. from Midnapore College and Vidyasagar University, India. I earned my Ph.D. in 2018 from the Department of Chemistry at the Indian Institute of Technology Kharagpur under the guidance of Prof. Kumar Biradha, focusing on self-assembled functional materials using a supramolecular approach. In the same year, I joined Prof. Niveen Khashab's group at King Abdullah University of Science and Technology (KAUST), Saudi Arabia, as a Postdoctoral Fellow, working on the self-assembly of organic materials like cages, macrocycles, energy-intensive separations, and bioimaging.
In 2022, I awarded the JSPS fellowship from Japan (Offer declined) and Harvard Higher Education Teaching Certificate. I then joined Prof. Eric Bloch’s group at the University of Delaware, USA, as a Postdoctoral Research Associate, investigating the stimuli responsiveness of porous cages. Currently, from 2023, I am working with Prof. Rein Ulijn's group at the CUNY Advanced Science Research Center, City University of New York, as a Research Associate, focusing on peptide materials such as systems chemistry, dynamic peptide libraries, and adaptive peptide assembly. I have been awarded the Ramanujan Faculty Fellowship in India for the period of 2024-29 (Offer declined).
Employment
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CUNY Advanced Science Research Center Research Associate2023 - Present
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Japan Society for the Promotion of Science Postdoctoral Fellowship2022 - 2024
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University of Delaware Postdoctoral Fellow2022 - 2022
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King Abdullah University of Science and Technology Postdoctoral Fellow2018 - 2022
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Vidyasagar University Project Assistant2011 - 2012
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (33)
- Backbone-Constrained Tripeptides Enable Sequence Control of Solid-State Dynamics Save
- Reconfigurable Peptide Nanostructures via Sequence and Solvent Tuning Save
- Backbone Confinement and Aromatic Substitutions Direct Supramolecular Dynamics in Tripeptides Save
- Water‐Vapor Responsive Metallo‐Peptide Nanofibers Save
- Water‐Vapor Responsive Metallo‐Peptide Nanofibers Save
- Flaring Inflammation and ER Stress by an Organelle-Specific Fluorescent Cage Save
- Increasing the Stability of Calixarene-Capped Porous Cages Through Coordination Sphere Tuning Save
- Water-Vapor Responsive and Erasable Metallo-Peptide Nanofibers Save
- DNA-Mimicking Metal-Organic Frameworks with Accessible Adenine Faces for Complementary Base Pairing Save
- Optimizing Host-Guest Selectivity for Ethylbenzene Capture Toward Superior Styrene Purification Save