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Photocatalytic and Electrocatalytic Properties of NGr-ZnO Hybrid Materials.
Pogacean, Florina; Stefan, Maria; Toloman, Dana; Popa, Adriana; Leostean, Cristian; Turza, Alexandru; Coros, Maria; Pana, Ovidiu; Pruneanu, Stela.
Afiliación
  • Pogacean F; National Institute for Research and Development of Isotopic and Molecular Technologies, Donat Street, no. 67-103, RO-400293 Cluj-Napoca, Romania.
  • Stefan M; National Institute for Research and Development of Isotopic and Molecular Technologies, Donat Street, no. 67-103, RO-400293 Cluj-Napoca, Romania.
  • Toloman D; National Institute for Research and Development of Isotopic and Molecular Technologies, Donat Street, no. 67-103, RO-400293 Cluj-Napoca, Romania.
  • Popa A; National Institute for Research and Development of Isotopic and Molecular Technologies, Donat Street, no. 67-103, RO-400293 Cluj-Napoca, Romania.
  • Leostean C; National Institute for Research and Development of Isotopic and Molecular Technologies, Donat Street, no. 67-103, RO-400293 Cluj-Napoca, Romania.
  • Turza A; National Institute for Research and Development of Isotopic and Molecular Technologies, Donat Street, no. 67-103, RO-400293 Cluj-Napoca, Romania.
  • Coros M; National Institute for Research and Development of Isotopic and Molecular Technologies, Donat Street, no. 67-103, RO-400293 Cluj-Napoca, Romania.
  • Pana O; National Institute for Research and Development of Isotopic and Molecular Technologies, Donat Street, no. 67-103, RO-400293 Cluj-Napoca, Romania.
  • Pruneanu S; National Institute for Research and Development of Isotopic and Molecular Technologies, Donat Street, no. 67-103, RO-400293 Cluj-Napoca, Romania.
Nanomaterials (Basel) ; 10(8)2020 Jul 27.
Article en En | MEDLINE | ID: mdl-32727153
ABSTRACT
N-doped graphene-ZnO hybrid materials with different N-doped grapheneZnO wt% ratios (110; 120; 130) were prepared by a simple and inexpensive sol-gel method. The materials denoted NGr-ZnO-1 (110), NGr-ZnO-2 (120), and NGr-ZnO-3 (130) were investigated with advanced techniques and their morpho-structural, photocatalytic, and electrocatalytic properties were reported. Hence, pure N-doped graphene sample contains flakes with the size ranging from hundreds of nanometers to micrometers. In the case of all NGr-ZnO hybrid materials, the flakes appear heavily decorated with ZnO nanoparticles, having a cauliflower-like morphology. The X-ray powder diffraction (XRD) investigation of N-doped graphene sample revealed that it was formed by a mixture of graphene oxide, few-and multi-layer graphene. After the ZnO nanoparticles were attached to graphene, major diffraction peaks corresponding to crystalline planes of ZnO were seen. The qualitative and quantitative compositions of the samples were further evidenced by X-ray photoelectron spectroscopy (XPS). In addition, UV photoelectron spectroscopy (UPS) spectra allowed the determination of the ionization energy and valence band maxima. The energy band alignment of the hybrid materials was established by combining UV-Vis with UPS results. A high photocatalytic activity of NGr-ZnO samples against rhodamine B solution was observed. The associated reactive oxygen species (ROS) generation was monitored by electron paramagnetic resonance (EPR)-spin trapping technique. In accordance with bands alignment and identification of radical species, the photocatalytic mechanism was elucidated.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Tipo de estudio: Qualitative_research Idioma: En Revista: Nanomaterials (Basel) Año: 2020 Tipo del documento: Article País de afiliación: Rumanía

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Tipo de estudio: Qualitative_research Idioma: En Revista: Nanomaterials (Basel) Año: 2020 Tipo del documento: Article País de afiliación: Rumanía