• Title of article

    Graphene Oxide@Polyaniline-FeF3 (GO@PANI-FeF3) as a Novel and Effectual Catalyst for the Construction of 4H-Pyrimido[2,1-b] benzothiazoles

  • Author/Authors

    Kamali-Ardakani ، Mohammad Department of Chemistry - Payame Noor University , Rostami ، Esmael Department of Chemistry - Payame Noor University , Zare ، Abdolkarim Department of Chemistry - Payame Noor University

  • From page
    236
  • To page
    247
  • Abstract
    A thermally and chemically sustainable nanocomposite, namely graphene oxide@polyaniline-FeF3 (GO@PANI-FeF3), was fabricated, and characterized using FT-IR (Fourier transform infrared spectroscopy), XRD (X-ray diffraction), FE-SEM (field emission scanning electron microscopy), EDAX (energy-dispersive X-ray spectroscopy), and TG (thermal gravimetric) analyses, and then 4H-pyrimido[2,1-b]benzothiazoles were constructed from aryl aldehydes, ethyl acetoacetate, and 2-aminobenzothiazole using GO@PANI-FeF3 as catalyst; performing the reactions under solvent-free conditions, efficiency, high yields, relatively short times, and recoverability of the catalyst are some advantages of our protocol.
  • Keywords
    Nanocomposite , Graphene oxide@polyaniline , FeF3(GO@PANI , FeF3) , 4H , Pyrimido[2 , 1 , b]benzothiazole , 2 , Aminobenzothiazole
  • Journal title
    Advanced Journal of Chemistry-Section A: Theoretical, Engineering and Applied Chemistry
  • Journal title
    Advanced Journal of Chemistry-Section A: Theoretical, Engineering and Applied Chemistry
  • Record number

    2759683