AI Article Synopsis

  • - Zinc porphyrin-functionalized fullerene derivatives were created and combined with titania to form composites, which were then studied for their electrochemical properties and energy levels through various measurements.
  • - Techniques like Raman, IR, and DLS were used to investigate the chemical groups on titania surfaces, along with the absorption properties and surface areas of the composites.
  • - The photocatalytic efficiency of these composites was tested on pollutants like phenol and methylene blue, with the best-performing composite used for cleaning river and wastewater, while byproducts were analyzed using advanced LC-UV/Vis-MS/MS methods.

Article Abstract

Zinc porphyrin-functionalized fullerene [C60] derivatives have been synthesized and used to prepare titania-based composites. The electrochemical properties and HOMO and LUMO levels of the photosensitizers were determined by electrochemical measurements. Raman and IR techniques were used to study chemical groups present on the titania surface. Absorption properties of the composites were measured in the solid state by diffuse reflectance UV-Vis spectra (DRS). The zeta potential and aggregate sizes were determined using dynamic light scattering (DLS) and electrophoretic light scattering (ELS) techniques. Surface areas were estimated based on Brunauer⁻Emmett⁻Teller (BET) isotherms. The photocatalytic activity of the photocatalysts was tested using two model pollutants, phenol and methylene blue. The composite with the highest photocatalytic potential (1/TiO₂) was used for river and wastewater remediation. The photodegradation intermediates were identified by LC-UV/Vis-MS/MS techniques.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6471970PMC
http://dx.doi.org/10.3390/molecules24061118DOI Listing

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