Nanomaterials (Jun 2023)

Comparative Study of the U(VI) Adsorption by Hybrid Silica-Hyperbranched Poly(ethylene imine) Nanoparticles and Xerogels

  • Michael Arkas,
  • Konstantinos Giannakopoulos,
  • Evangelos P. Favvas,
  • Sergios Papageorgiou,
  • George V. Theodorakopoulos,
  • Artemis Giannoulatou,
  • Michail Vardavoulias,
  • Dimitrios A. Giannakoudakis,
  • Konstantinos S. Triantafyllidis,
  • Efthalia Georgiou,
  • Ioannis Pashalidis

DOI
https://doi.org/10.3390/nano13111794
Journal volume & issue
Vol. 13, no. 11
p. 1794

Abstract

Read online

Two different silica conformations (xerogels and nanoparticles), both formed by the mediation of dendritic poly (ethylene imine), were tested at low pHs for problematic uranyl cation sorption. The effect of crucial factors, i.e., temperature, electrostatic forces, adsorbent composition, accessibility of the pollutant to the dendritic cavities, and MW of the organic matrix, was investigated to determine the optimum formulation for water purification under these conditions. This was attained with the aid of UV-visible and FTIR spectroscopy, dynamic light scattering (DLS), ζ-potential, liquid nitrogen (LN2) porosimetry, thermogravimetric analysis (TGA), and scanning electron microscopy (SEM). Results highlighted that both adsorbents have extraordinary sorption capacities. Xerogels are cost-effective since they approximate the performance of nanoparticles with much less organic content. Both adsorbents could be used in the form of dispersions. The xerogels, though, are more practicable materials since they may penetrate the pores of a metal or ceramic solid substrate in the form of a precursor gel-forming solution, producing composite purification devices.

Keywords