
Our Research Interest
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Energy Transfer Photocatalysis & Photo-redox Catalysis
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Ligand Tuned Metal Catalyzed C-C Bond Functionalization
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Remote C-H Activation & Asymmetric Catalysis
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Drug Discovery & Process Development
Organic chemistry has reached a pinnacle of exceptional proficiency, enabling the independent synthesis of naturally significant molecules within a chemical laboratory setting. This remarkable advancement has been further propelled by the impressive advent of catalytic chemistry. In this context, regio- and chemo-selective functionalization of small molecules has emerged as a highly economical and efficient technology, facilitating extraordinary chemical transformations with phenomenal success rates under ambient conditions.
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C-H activation :
Exploration of sp3 C-H, sp2 C-H bond in a small molecule by following radical intermediate and photocatalytic pathway; Development of Ni/photo-redox catalysis
Ligand tuned p-functionalization:
Exploration of Insertion and cross-coupling reactions of p-functionality by tuning ligand variation through photocatalytic pathway.
Drug diversification and late-stage functionalization:
Cost effective synthesis of various value-added organic molecules by photo-redox and energy-transfer Photocatalysis.
