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◆ Molecules (Basel, Switzerland)2026-08-06

Optimization of Reduced Graphene Oxide/Titanium Dioxide-Coated Polyurethane Foams as Novel Floating Photocatalysts for Water Decontamination.

Natalia Elia, Francesca De Rosa, Anna Dotti, Andrea Basso Peressut, Roberto Matarrese, Saverio Latorrata

原始摘要(英文原文)· Original abstract
Titanium dioxide (TiO2) photocatalysis is a promising sustainable solution for water decontamination; however, the industrial application of TiO2 is hindered by its wide band gap and high handling and recovery costs. This work proposes to overcome these issues by developing a composite coating of nanopowder TiO2 and reduced graphene oxide (rGO) applied onto commercial polyurethane (PU) foams by means of a simple, low-energy dip-coating process designed to enhance pollutant adsorption and photocatalytic activity. The rGO-TiO2 coating was optimized by exploring different surface pre-treatments of the PU foams, the deposition of rGO-TiO2 multilayers, and the variation in the rGO-TiO2 mass ratio (1:3, 1:4, and 1:5). The prepared materials were characterized by optical microscopy, SEM-EDX, DSC, and thermogravimetry, while the stability of the coating was preliminarily evaluated through ultrasonic tests. The water decontamination capability of the coated foams was investigated by adsorption and UV-Vis photodegradation tests using a 3 mg/L aqueous solution of Rhodamine B (RhB) as a model contaminant. The results demonstrated that the rGO-TiO2 1:3-coated samples achieved complete RhB photodegradation within 90 min, with a pseudo-first-order kinetic constant of 0.0446 1/min. Moreover, pre-treating the foam with a 3 M NaOH solution improved coating adhesion onto the PU substrate while maintaining comparable decontamination efficiency.
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Optimization of Reduced Graphene Oxide/Titanium Dioxide-Coated Polyurethane Foams as Novel Floating Photocatalysts for Water Decontamination. — 科研速览 Science Skim