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Transition-Metal-Free C(sp²)-H Functionalization of Biologically Relevant Structures via Sustainable Methods
Author(s):
1. Jamal Rafique Khan: Institute of Chemistry ( INQUI), Federal University of Mato Grosso do Sul - UFMS, Brazil.
Abstract:
The direct functionalization of C-H bonds is a crucial transformation in organic synthesis; however, reliance on precious transition-metal catalysts presents economic and environmental challenges. This talk will highlight our decadelong research program, which has developed sustainable, transition-metal-free strategies for the C(sp²)-H functionalization of biologically relevant scaffolds. By designing novel reagent systems as well as harnessing alternative energy inputs-including photochemistry, electrochemistry, and microwave/ultrasound irradiations-we have established efficient protocols for regioselective CHalogen (X = Cl, Br, I), C-Chalcogen (S, Se, Te), and C-Nitrogen bond formation. Our interest in green chemistry principles, employing benign reagents, minimizing energy consumption, and reducing waste, is to provide practical and powerful alternatives for the late-stage diversification of complex molecules.
Page(s): 16-16
DOI: DOI not available
Published: Journal: 4th International Conference of Sciences “Revamped Scientific Outlook of 21st Century, 2025” , November 12,2025, Volume: 1, Issue: 1, Year: 2025
Keywords:
bioactive compounds , organic synthesis , Green Chemistry , Csp²H Bond Functionalization , Transition MetalFree
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