AI Article Synopsis

  • Organoselenium compounds are valuable for various applications, including anticancer treatments and catalysis.
  • The study presents a one-pot synthesis method for dimethyl substituted and unsubstituted dipyrazinyl monoselenides and disenides, using sodium borohydride and alkylation with pyrazinyl halides.
  • Characterization techniques such as IR, UV-vis, and NMR were used to confirm the structures and optical properties of these compounds, complemented by DFT calculations for deeper analysis of their electronic properties.

Article Abstract

Organoselenium compounds have long been fascinated researchers owing to their wide range of applications, such as in anticancer, in catalysis, and as molecular precursors for metal selenides. In this view, herein, the one-pot synthesis of dimethyl substituted and unsubstituted dipyrazinyl monoselenides, [(2-pyz)Se] and [(2,5-Me-3-pyz)Se], and the corresponding dipyrazinyl disenides, [(2-pyzSe)] and [(2,5-Me-3-pyzSe)], is demonstrated by the reduction of selenium metal using sodium borohydride at room temperature and a subsequent alkylation using the corresponding pyrazinyl halide in ethanol. All the diselenides and monoselenides were characterized using IR, UV-vis, photoluminescence, and NMR (H, C{H}, and Se{H}) spectroscopy. The molecular structures of the diselenides and monoselenides were unambiguously determined by single-crystal X-ray diffraction (SC-XRD). The optical properties, including absorption, excitation, emission, and quantum yield, of these organoselenium compounds were examined. Additionally, DFT calculations were performed to determine the HOMO and LUMO orbitals, band gap, and oscillator strength of these ligands.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10719717PMC
http://dx.doi.org/10.1039/d3ra06591jDOI Listing

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