Dr. SUBHENDU DHIBAR
The University of Tokyo, Indian Institute of Technology Patna, University of Burdwan
About
Dr. Subhendu Dhibar was born in 1991 in Purandarpur, Birbhum, West Bengal, India. He obtained his Ph.D. in Chemistry from Visva-Bharati University, India, in 2020, specializing in supramolecular materials under the supervision of Prof. Biswajit Dey. In 2021, he was awarded the prestigious Dr. D. S. Kothari Postdoctoral Fellowship and joined the research group of Prof. Bidyut Saha in the Department of Chemistry at The University of Burdwan, India. In 2025, he received the DST-CSRI Postdoctoral Fellowship and worked with Prof. Soumya Jyoti Ray at the Indian Institute of Technology (IIT) Patna, Bihar, India. Later in 2025, he was awarded the JSPS Postdoctoral Fellowship and is currently conducting research in the group of Prof. Koichi Mayumi at the Neutron Science Laboratory, Institute for Solid State Physics (ISSP), The University of Tokyo, Japan. Dr. Dhibar’s research is interdisciplinary, encompassing supramolecular chemistry, functional gel materials, and metal-organic frameworks, with applications in biomedicine, flexible electronics, and environmental science. His work particularly focuses on the design of tough hydrogels, self-healing metallogels, semiconducting soft materials, flexible microelectronic devices, and non-volatile resistive memory switching systems.
Employment
Employment history is unavailable.
Education
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The University of Tokyo Postdoctoral Associate2025 - Present
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Indian Institute of Technology Patna DST CSRI POSTDOCTORAL FELLOW2025 - 2025
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University of Burdwan DS KOTHARI POSTDOCTORAL FELLOW2021 - 2024
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Visva-Bharati Ph.D.2014 - 2020
Projects & Funding
Projects & funding information is unavailable.
Publications (10)
- Fabrication of a Semiconducting Supramolecular Nickel(II)-Based Metallogel as an Efficient Active Material for Nonvolatile Memory Applications Save
- Arsenic Contamination in Water: Occurrence, Impact, and Remediation Strategies Save
- Recent advances and challenges in graphene-based nanomaterials for photocatalytic CO2 reduction Save
- Immunological Responses to Foodborne Threats Save
- Exploring a supramolecular gel to in‐situ crystal fabrication from the low molecular weight gelators: a crystal engineering approach towards microelectronic device application Save
- A novel supramolecular Zn(ii)-metallogel: an efficient microelectronic semiconducting device application Save
- A bio-relevant supramolecular Co(ii)-complex for selective fluorescence sensing of μM range inorganic As(iii) in aqueous medium and its intracellular tracking in bacterial systems Save
- A semiconducting supramolecular Co(ii)-metallohydrogel: an efficient catalyst for single-pot aryl–S bond formation at room temperature Save
- The development of a rapid self-healing semiconducting monoethanolamine-based Mg(OH)2 metallogel for a Schottky diode application with a high ON/OFF ratio Save
- A supramolecular Cd(ii)-metallogel: an efficient semiconductive electronic device Save