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The presence of oxygen vacancies and its role as a double-edged sword in anatase TiO2/polymerized carbon nitride composites for oxidative and reductive photocatalytic reactions

Manrique Holguin, Manuela et al · Elsevier Science SA · 2026

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In-depth characterization of TiO2@PCN composites (PCN, polymeric carbon nitride) prepared with a urea precursor (T/U30 % T/U80 %) and their photocatalytic activities in nitrobenzene (NB) reduction and malachite green dye (MGD) oxidation allowed to evaluate the role of oxygen vacancies in the photocatalytic activity. Materials T/U30 % and T/U80 % exhibited low amounts of PCN (<2.3 % wt.), a significant presence of Ti3+ sites related to deep electron traps and visible light absorption. Continuous wave electron spin resonance (CW-ESR) spectra at − 196 ◦C during in-situ UV and visible light irradiation showed that the intensity of signals attributed to deep electron traps increased in the composites. Regarding photocatalytic activity, T/U30 % and T/U80 % materials were more efficient than pristine TiO2 and PCN in MGD oxidation, whereas their capacity to reduce NB was strongly affected under UVA- and blue-LED irradiation. We concluded that this synthetic method using urea as a PCN precursor led to the generation of TiO2@PCN composites with visible light absorption, direct Zschemes, low amounts of PCN, and high presence of oxygen vacancies acting as recombination centers, which caused a detrimental effect on the photocatalytic reductive properties of T/U30 % and T/U80 % composites. In addition, interaction with NB promoted the formation of nitrosobenzene and azoxybenzene instead of aniline, as occurred with pure PCN. Computational calculations demonstrated that NB interacts differently with PCN, TiO2, and oxygen-deficient TiO2. Finally, the visible-light absorption of T/U30 % and T/U80 % samples could not be exclusively attributed to PCN’s presence but also to oxygen vacancies generating midgap states. Fil: Manrique Holguin, Manuela. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - La Plata. Centro de Investigación y Desarrollo en Ciencias Aplicadas "Dr. Jorge J. Ronco". Universidad Nacional de la Plata. Facultad de Ciencias Exactas. Centro de Investigación y Desarrollo en Ciencias Aplicadas; Argentina Fil: Murillo Sierra, Juan C.. Universidad Tecnologica Metropolitana (utem);

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APA 7

Manrique Holguin, M. E. A. (2026). The presence of oxygen vacancies and its role as a double-edged sword in anatase TiO2/polymerized carbon nitride composites for oxidative and reductive photocatalytic reactions. http://hdl.handle.net/11336/286606

MLA

Manrique Holguin, Manuela et al. "The presence of oxygen vacancies and its role as a double-edged sword in anatase TiO2/polymerized carbon nitride composites for oxidative and reductive photocatalytic reactions." 2026. http://hdl.handle.net/11336/286606.

Chicago

Manrique Holguin, Manuela et al. 2026. "The presence of oxygen vacancies and its role as a double-edged sword in anatase TiO2/polymerized carbon nitride composites for oxidative and reductive photocatalytic reactions.". http://hdl.handle.net/11336/286606.

Harvard

Manrique Holguin, M. E. A. 2026, The presence of oxygen vacancies and its role as a double-edged sword in anatase TiO2/polymerized carbon nitride composites for oxidative and reductive photocatalytic reactions, Elsevier Science SA, available at: http://hdl.handle.net/11336/286606 [Accessed 5 Aug. 2026].

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Título
The presence of oxygen vacancies and its role as a double-edged sword in anatase TiO2/polymerized carbon nitride composites for oxidative and reductive photocatalytic reactions
Autor / colaboradores
Manrique Holguin, Manuela et al
Editorial
Elsevier Science SA
Año de publicación
2026
ISSN
0254-0584
ISSN
0254-0584
Idioma
Inglés

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