C,N-Bipyrazole Receptor Grafted onto a Porous Silica Surface as a Novel Adsorbent Based Polymer Hybrid
Publication Type
Original research
Authors
  • Smaail Radi
  • Smaail Radia, b, , , Ahmed Attayibata, Mohamed El-Massaoudia, Maryse Bacquetc, Shehdeh Jodehd, , , Ismail Waradd, Salim S. Al-Sh
  • Ahmed Attayibat
  • Mohamed El Massaoudi
  • Maryse Bacquet
  • Shehdeh Jodeh
  • Ismail Warad
  • Yahia Mabkhot
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A simple heterogeneous synthesis of pure adsorbent based polymer hybrid made by condensing a functionalized C,N-bipyrazole with a 3-glycidoxypropyl-trimethoxysilane silylant agent, previously anchored on a silica surface was developed. The formed material (SG2P) was characterized through elemental analysis, FT-IR spectroscopy, 13C NMR of solid state, scanning electron microscope (SEM), and was studied and evaluated by determination of the surface area using the BET equation, the adsorption and desorption capability using the isotherm of nitrogen and B.J.H. pore sizes. The new material exhibits good thermal stability determined by thermogravimetry curves and good chemical stability was examined in various acidic and buffer solutions (pH 1–7). The binding and adsorption abilities of SG2P were investigated for Hg2+, Cd2+, Pb2+, Zn2+, K+, Na+ and Li+ cations and compared to the results of classical liquid–liquid extraction with the unbound C,N-bipyrazole compound. The grafting at the surface of silica does not affect complexing properties of the ligand and the SG2P exhibits a high selectivity toward Hg2+ ion with no complexation being observed towards zinc and alkali metals. The extracted and the complexing cation percentages were determined by atomic absorption measurements.

Journal
Title
Talanta
Publisher
Elsevier
Publisher Country
Netherlands
Indexing
Thomson Reuters
Impact Factor
4.244
Publication Type
Both (Printed and Online)
Volume
143
Year
2015
Pages
1-6