Gargi Kundu

Grant Category: Fulbright-Nehru Postdoctoral Research Fellowships
Project Title: Fluorescent Boron-based Radicals and their Applications
Field of Study: Chemistry
Home Institution: Philipps University of Marburg, Marburg, Germany
Host Institution: Massachusetts Institute of Technology , Cambridge, MA
Grant Start Month: March 2024
Duration of Grant: Twenty-four-months

Brief Bio:

Dr. Gargi Kundu is an Alexander von Humboldt postdoctoral fellow at Philipps University of Marburg, Germany. She obtained her B.Sc. from Jadavpur University, Kolkata, West Bengal in 2015, and her master’s from the Indian Institute of Technology Madras, Chennai, Tamil Nadu in 2017. She then received her Ph.D. in 2022 at CSIR-National Chemical Laboratory (CSIR-NCL), Pune, Maharashtra, with CSIR-UGC NET fellowship.

Dr. Kundu specializes in the chemistry of N-Heterocyclic Carbenes, focusing on small molecule activation, stabilization of carbon-based diradicals, and NHC-boron chemistry. She has published numerous articles in esteemed international journals, and has received various accolades during her Ph.D., including the NCL RF Keerthi Sangoram Memorial Endowment award for ‘the best research scholar’, and the Best Thesis award in chemical science from CSIR-NCL and AcSIR, respectively. Notable achievements also include the RSC Best Poster award by Poster Twitter Conference, and the Best Oral Talk award at ICMGSC-2023.

The diradical field, despite intriguing electronic properties, lacks extensive study. Boron-doped PAHs are gaining attention for being low in toxicity, cost-effective, with high π-affinity, photoluminescence, and redox properties. As a Fulbright-Nehru Postdoctoral Research fellow at the Massachusetts Institute of Technology, Cambridge, MA, Dr. Kundu is synthesizing stable boron-based diradicals, combining open-shell diradical character, luminescence, and redox properties. The focus is on exploring their potential applications as super-electron donors, photo-/electro-catalysts, redox switches, functional chromophores/ fluorophores in photovoltaic cells, and artificial light-harvesting systems with a special emphasis on hydrogen activation.

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