A straightforward and efficient methodology has been employed for the synthesis of a diverse set of base-modified fluorescent nucleoside conjugates Cu(I)-catalysed cycloaddition reaction of 5-ethynyl-2',3',5'-tri--acetyluridine/3',5'-di--acetyl-2'-deoxyuridine with 4-(azidomethyl)--(4'-aryl)-9,10-dihydro-2,8-chromeno[8,7-][1,3]oxazin-2-ones in BuOH to afford the desired 1,2,3-triazoles in 92-95% yields. Treatment with NaOMe/MeOH resulted in the final deprotected nucleoside analogues. The synthesized 1,2,3-triazoles demonstrated a significant emission spectrum, featuring two robust bands in the region from 350-500 nm (with excitation at 300 nm) in fluorescence studies. Photophysical investigations revealed a dual-emissive band with high fluorescence intensity, excellent Stokes shift (140-164 nm) and superior quantum yields (0.068-0.350). Furthermore, the electronic structures of the synthesized triazoles have been further verified by DFT studies. Structural characterization of all synthesized compounds was carried out using various analytical techniques, including IR, H-NMR, C-NMR, H-H COSY, H-C HETCOR experiments, and HRMS measurements. The dual-emissive nature of these nucleosides would be a significant contribution to nucleoside chemistry as there are limited literature reports on the same.
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http://dx.doi.org/10.1039/d4ob00749b | DOI Listing |
Mater Horiz
January 2025
State Key Laboratory of Digital Medical Engineering, School of Biological Science and Medical Engineering, Southeast University, Nanjing, 210096, P. R. China.
Atrazine is a widely used and heavily contaminating pesticide. In this work, we designed and synthesized a versatile catalyst for the degradation and fluorescent detection of atrazine. This catalyst consists of Cu clusters modified by a Schiff base.
View Article and Find Full Text PDFRSC Adv
December 2024
Bioorganic Laboratory, Department of Chemistry, University of Delhi Delhi-110007 India
A synthesis of a small library of fluorescent 1,4-dihydropyridine nucleoside analogues has been successfully carried out under solvent-free conditions a one-pot three-component Hantzsch condensation reaction. The process involved a Ba(NO) catalyzed solvent-free reaction between 3',5'-di--acetyl-5-formyl-2'-deoxyuridine, differently substituted β-keto ester and ammonium acetate under microwave irradiation. This facile methodology yielded the desired products with very high yields (86-96%) under solvent-free reaction conditions in a short reaction time, which was followed by a simple workup.
View Article and Find Full Text PDFChemistry
December 2024
Institute for Biological Interfaces 1 (IBG 1), Karlsruhe Institute of Technology (KIT), Hermann-von-Helmholtz-Platz 1, 76344, Eggenstein-Leopoldshafen, Germany.
Org Biomol Chem
June 2024
Bioorganic Laboratory, Department of Chemistry, University of Delhi, Delhi-110007, India.
A straightforward and efficient methodology has been employed for the synthesis of a diverse set of base-modified fluorescent nucleoside conjugates Cu(I)-catalysed cycloaddition reaction of 5-ethynyl-2',3',5'-tri--acetyluridine/3',5'-di--acetyl-2'-deoxyuridine with 4-(azidomethyl)--(4'-aryl)-9,10-dihydro-2,8-chromeno[8,7-][1,3]oxazin-2-ones in BuOH to afford the desired 1,2,3-triazoles in 92-95% yields. Treatment with NaOMe/MeOH resulted in the final deprotected nucleoside analogues. The synthesized 1,2,3-triazoles demonstrated a significant emission spectrum, featuring two robust bands in the region from 350-500 nm (with excitation at 300 nm) in fluorescence studies.
View Article and Find Full Text PDFInt J Biol Macromol
December 2023
Research Unit Materials and Organic Synthesis (UR17ES31), Preparatory Institute for Engineering Studies of Monastir, University of Monastir, Tunisia. Electronic address:
Stimulus-responsive fluorescent-modified biopolymers have received significant attention in the field of chemosensors. Herein, four new fluorescent dyes, namely, S: (PDA-DANC), S: (SAL-PDA-DANC), S: (BrSAL-PDA-DANC) and S: (ClSAL-PDA-DANC) have been successfully synthesized from 2,3-dialdehyde nanocellulose (DANC) for the detection of heavy metals. The microstructural and photophysical properties of nanocellulose (NC), microcrystalline cellulose (DANC) and the synthesized S to S dyes were investigated by FT-IR, SEM-EDX, XRD, TGA, DLS and photoluminescence.
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