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Few-Layer MoS₂ Nanodomains Decorating TiO₂ Nanoparticles: A Case Study for the Photodegradation of Carbamazepine

Articolo
Data di Pubblicazione:
2018
Abstract:
S-doped TiO2 and hybrid MoS2/TiO2 systems have been synthesized, via the sulfidation with H2S of the bare TiO2 and of MoOx supported on TiO2 systems, with the aim of enhancing the photocatalytic properties of TiO2 for the degradation of carbamazepine, an anticonvulsant drug, whose residues and metabolites are usually inefficiently removed in wastewater treatment plants. The focus of this study is to find a relationship between the morphology/structure/surface properties and photoactivity. The full characterization of samples reveals the strong effects of the H2S action on the properties of TiO2, with the formation of defects at the surface, as shown by transmission electron microscopy (TEM) and infrared spectroscopy (IR), while also the optical properties are strongly affected by the sulfidation treatment, with changes in the electronic states of TiO2. Meanwhile, the formation of small and thin few-layer MoS2 domains, decorating the TiO2 surface, is evidenced by both high-resolution transmission electron microscopy (HRTEM) and UV-Vis/Raman spectroscopies, while Fourier-transform infrared (FTIR) spectra give insights into the nature of Ti and Mo surface sites. The most interesting findings of our research are the enhanced photoactivity of the MoS2/TiO2 hybrid photocatalyst toward the carbamazepine mineralization. Surprisingly, the formation of hazardous compounds (i.e., acridine derivatives), usually obtained from carbamazepine, is precluded when treated with MoS2/TiO2 systems.
Tipologia CRIS:
03A-Articolo su Rivista
Keywords:
FTIR spectroscopy; MoS2; Raman spectroscopy; TiO2; UV-Vis spectroscopy; carbamazepine; hybrid materials; photocatalytic activity; photodegradation; transmission electron microscopy
Elenco autori:
Cravanzola, Sara; Sarro, Marco; Cesano, Federico; Calza, Paola; Scarano, Domenica
Autori di Ateneo:
CALZA Paola
CESANO Federico
SCARANO Domenica
Link alla scheda completa:
https://iris.unito.it/handle/2318/1664765
Link al Full Text:
https://iris.unito.it/retrieve/handle/2318/1664765/403872/Nanomaterials%202018_AperTO.pdf
Pubblicato in:
NANOMATERIALS
Journal
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URL

http://www.mdpi.com/2079-4991/8/4/207
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