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Solar Light Photoactive Floating Polyaniline/TiO2 Composites for Water Remediation

Articolo
Data di Pubblicazione:
2021
Citazione:
Solar Light Photoactive Floating Polyaniline/TiO2 Composites for Water Remediation / E. Falletta, A. Bruni, M. Sartirana, D.C. Boffito, G. Cerrato, A. Giordana, R. Djellabi, E.S. Khatibi, C.L. Bianchi. - In: NANOMATERIALS. - ISSN 2079-4991. - 11:11(2021), pp. 3071.1-3071.15. [10.3390/nano11113071]
Abstract:
In the present study, the development of innovative polyurethane-polyaniline/TiO2 modified floating materials applied in the sorption and photodegradation of rhodamine B from water matrix under solar light irradiation is reported. All the materials were fabricated with inexpensive and easy approaches and were properly characterized. The effect of the kind of polyaniline (PANI) dopant on the materials’ behavior was investigated, as well as the role of the conducting polymer in the pollutant abatement on the basis of its physico-chemical characteristics. Rhodamine B is removed by adsorption and/or photodegradation processes depending on the type of doping agent used for PANI protonation. The best materials were subjected to recycle tests in order to demonstrate their stability under the reaction conditions. The main transformation products formed during the photodegradation process were identified by ultraperformance liquid chromatography-mass spectrometry (UPLC/MS). The results demonstrated that photoactive floating PANI/TiO2 composites are useful alternatives to common powder photocatalysts for the degradation of cationic dyes.
Tipologia IRIS:
01 - Articolo su periodico
Keywords:
floating materials; composites; polyaniline; titania; water remediation; photocatalysis
Elenco autori:
E. Falletta, A. Bruni, M. Sartirana, D.C. Boffito, G. Cerrato, A. Giordana, R. Djellabi, E.S. Khatibi, C.L. Bianchi
Autori di Ateneo:
BIANCHI CLAUDIA LETIZIA MADDALENA ( autore )
FALLETTA ERMELINDA ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/884044
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/884044/1917063/nanomaterials-11-03071-v2.pdf
Progetto:
Water decontamination by sunlight-driven floating photocatalytic systems (SUNFLOAT)
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