Loading...
Search for: unsymmetrical-diphenyl-ether
0.005 seconds

    Immobilized palladium nanoparticles on MNPs@A-N-AEB as an efficient catalyst for C-O bond formation in water as a green Solvent

    , Article Applied Organometallic Chemistry ; Volume 32, Issue 9 , 2018 ; 02682605 (ISSN) Moghaddam, F. M ; Eslami, M ; Sharif University of Technology
    John Wiley and Sons Ltd  2018
    Abstract
    Palladium nanoparticles immobilized on the magnetic nanoparticles@2-amino-N-(2-aminoethyl) benzamide (MNPs@A-N-AEB.Pd0) have been presented as an efficient, and reusable magnetically heterogeneous catalyst for the C-O coupling reaction, namely Ullmann condensation reactions in an aqueous medium. This heterogeneous catalyst shows superior reactivity for the C-O arylation of different aryl halide (chloride, bromide, and iodide) with phenol derivatives to afford the desired products in good to excellent yields within short reaction time. Moreover, the catalyst can be easily recovered and reused for seven runs without loss of catalytic activity. The catalyst was characterized by several... 

    A novel magnetic polyacrylonotrile-based palladium core−shell complex: a highly efficient catalyst for synthesis of Diaryl ethers

    , Article Journal of Organometallic Chemistry ; Volume 916 , 14 June , 2020 Matloubi Moghaddam, F ; Jarahiyan, A ; Eslami, M ; Pourjavadi, A ; Sharif University of Technology
    Elsevier B.V  2020
    Abstract
    The present article describes the synthesis of a new magnetic polyacrylonitrile-based Pd catalyst involving polyacrylonitrile modified via 2-aminopyridine as an efficient support to immobilize Pd nanoparticles. The simple reusability, easy separation and high stability of this Pd complex make it an excellent candidate to generate a C–O bond via Ph-X activation which is a really important subject in achieving biologically active compounds. It is worth to note access to good and high yields as well as broad substrate scope have resulted from superior reactivity of this catalyst complex. Furthermore, the structure of the magnetic polyacrylonitrile-based heterogeneous catalyst was characterized...