4.8 Article

Green colloidal ZnS quantum dots/chitosan nano-photocatalysts for advanced oxidation processes: Study of the photodegradation of organic dye pollutants

Journal

APPLIED CATALYSIS B-ENVIRONMENTAL
Volume 158, Issue -, Pages 269-279

Publisher

ELSEVIER
DOI: 10.1016/j.apcatb.2014.04.026

Keywords

Environmental catalysis; Environmental nanotechnology; Photocatalysis; Nanoparticles; Advanced oxidation process; Green chemical engineering

Funding

  1. CAPES
  2. FAPEMIG
  3. CNPq

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Quantum dots (QDs) are semiconductor nanoparticles that are emerging as a new class of fluorescent nanomaterials for environmental applications. Heterogeneous photocatalysis using QDs is an attractive technology for the advanced treatment of water contaminated with organic dyes. In this work, novel nano-photocatalysts based on ZnS QDs functionalized with chitosan were developed using a green colloidal chemical method in aqueous media at room temperature. These ZnS/chitosan nano-photocatalysts (ZnS-CHI) were extensively characterized, and the results demonstrated that chitosan was an effective capping ligand for the direct production of water-soluble ZnS QDs with an average nanocrystal size of 3.8 nm. Methylene blue and methyl orange dyes, which were used as model organic pollutants, were effectively oxidized by the photocatalytic activity of the ZnS/chitosan nanostructured systems under UV irradiation. In addition, the ZnS-CHI nano-conjugates exhibited blue photoluminescent behavior upon ultraviolet excitation. Therefore, a green facile chemical synthesis of fluorescent nano-photocatalytic materials was developed using an abundant biocompatible polysaccharide that exhibit potential for the photodegradation of hazardous organic pollutants present in wastewater and several other environmentally friendly applications. (C) 2014 Elsevier B.V. All rights reserved.

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