Herein, the amino-capped TiO2 nanoparticles were synthesized using tetrabutyl titanate and amino polymers by a two-step sol-gel and hydrothermal method technique for the fabrication of functional cotton fabric. The prepared TiO2 nanoparticles and the treated cotton fabric were characterized by transmission electron microscope (TEM), X-ray diffraction (XRD), field emission scanning electron microcopy (FE-SEM) photocatalytic and antibacterial measurement. The results indicate the typical characteristic anatase form of the amino-capped TiO2 NPs with an average crystallite size of 14.9 nm. The treated cotton fabrics exhibit excellent antibacterial property and good photocatalytic degradation of methylene blue.
To improve the adsorption
performance of carbon materials, novel
ZnO nanoparticle-incorporated porous carbon nanofibers (Zn@PCNFs)
were prepared via an electrospinning technique. A facile one-step
fabrication strategy was proposed to simultaneously complete the carbonization
of a peroxided polyacrylonitrile framework, the activating treatment
caused by ZnO reducing to Zn, and the pore generation caused by evaporation
of reduced Zn with a low melting point. The influences of the pH,
ion category, and concentration on methylene blue adsorption were
investigated. The physical–chemical characterizations showed
that ZnO was homogeneously distributed on the nanofibers and micropores
were generated. The adsorption results revealed that an efficient
adsorption was obtained within a large range of pH values through
different adsorption models, which was accelerated by increasing the
temperature. Therefore, the novel Zn@PCNFs are anticipated to be applied
in the future as an effective dye waste adsorbent.
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