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Artigo 2023

Enhanced 4-chlorophenol Degradation under Visible and Solar Radiation through TiO2/g-C3N4 Z-Scheme Heterojunction

Autores

Rodrigues, Karla Faquine
Moraes, Nicolas Perciani de
Dos Santos, Alan Silva
Montanheiro, Thaís Larissa Do Amaral
Campos, Tiago Moreira Bastos
Rodrigues, Liana Alvares
Brunelli, Deborah Dibbern

Biointerface Research in Applied Chemistry , vol. 13 , no. 3 , Article 203

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Citações
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Autores

Resumo

© 2022 by the authors.The efficient remediation of the persistent organic pollutant known as 4-chlorophenol (4CP) in aqueous effluent presents a challenge for a wide array of industries due to its elevated toxicity and resistance to natural degradation processes. This study proposes the development of a hybrid photocatalyst composed of titanium dioxide (TiO2) and graphitic carbon nitride (g-C3N4), aiming to increase the efficiency of photocatalytic degradation of 4CP under solar and visible radiation through the formation of Z-scheme heterojunction between the semiconductors. The results showed that the synthesis of the TiO2/g-C3N4 binary material was successful by X-ray diffractometry and infrared spectrometry. Furthermore, the addition of g-C3N4 to TiO2 led to optical and morphological modifications, such as the pore volume increase and gap energy of TiO2/g-C3N4. Concerning the photocatalytic evaluation, the main results indicate that photocatalytic activity under visible radiation of the TiO2/g-C3N4 improved by 44.8% compared to pure TiO2, whereas an improvement of 30.5% was obtained under simulated solar radiation. This improvement in efficiency was further corroborated by chronoamperometry tests, which demonstrated a higher photocurrent generation for the TiO2/g-C3N4. The radical generation mechanism suggested the creation of an effective Z-scheme heterojunction between the semiconductors, as the formation of both hydroxyl and superoxide radicals was observed.

Palavras-chave

4-chlorophenol graphitic carbon nitride photocatalysis titanium dioxide Z-scheme heterojunction

Biotechnology (BIOC) Biochemistry (BIOC) Molecular Medicine (BIOC) Molecular Biology (BIOC)
: Scopus
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