Use este identificador para citar ou linkar para este item: http://www.alice.cnptia.embrapa.br/alice/handle/doc/1187355
Título: Hydrothermal Synthesis of High-PerformanceZnO Nanorods for Enhanced Photocatalytic Degradation of Organic Pollutants.
Autoria: MARRENJO, G. J.
NUNES, P. H. H.
AUGUSTO, K. K. L.
ALMEIDA, J. C. de
RIBEIRO, C.
PATROCÍNIO, A. O. T.
LOPES, O. F.
Afiliação: FEDERAL UNIVERSITY OF UBERLÂNDIA, UBERLÂNDIA, MINAS GERAIS
FEDERAL UNIVERSITY OF UBERLÂNDIA, UBERLÂNDIA
FEDERAL UNIVERSITY OF UBERLÂNDIA, UBERLÂNDIA
CAUE RIBEIRO DE OLIVEIRA, CNPDIA
FEDERAL UNIVERSITY OF UBERLÂNDIA, UBERLÂNDIA
FEDERAL UNIVERSITY OF UBERLÂNDIA, UBERLÂNDIA.
Ano de publicação: 2026
Referência: ACS Omega, v. 11, 2026.
Páginas: 24725−24738
Conteúdo: Excessive production and indiscriminate use of organicpollutantshavecausedsevereenvironmental imbalances. Heterogeneous photocatalysis has emerged as a promising approach for the degradation of these contaminants. However, thedevelopmentofphotocatalystswithhighactivityandstability remains a key challenge. Thisworkdescribes the hydrothermal synthesis of ZnO-based photocatalysts, carried out at different temperatures (25, 100, 150, and 200 °C), followed by an evaluation of their performance as photocatalysts in the degradationof organicpollutants (methyleneblue, rhodamineB, amiloride and ciprofloxacin). ZnO samples exhibited rod-like morphology, especiallyinthesamplessynthesizedat100°C.The ZnO-100 sample showed greater efficiency in the photo degradationof all organicpollutants.Theenhancedperformancecanbeattributedto itshighest specificsurfaceareaandphase mixturebetweenZnOandZn(OH)2.ThephasetransitionfromzinchydroxidetoZnOmayhave influencedthe formationof a morphologythatenhancedphotocatalyticactivity.Fluorescenceanalysisusingterephthalicacid(TA)asaprobeforOH•,combined withradicalscavengingexperiments, revealedthatO2 −•playthedominantroleinthephotocatalyticdegradationprocess, indicating anindirect reactionmechanism.Thismechanismisconsistentwiththeobservednonselectivityof theZnOsamples inremoving pollutants fromdifferent chemical classes. TheZnOsample exhibited good stability over four consecutive reuse cycles and maintainedhighphotocatalyticactivityacross abroadpHrange(4−9).Overall, thehydrothermalmethodprovedeffective for producingZnOnanorodswithhighphotocatalyticperformancefororganicpollutantdegradation.
Palavras-chave: Hydrothermal conditions
Hexagonal crystalline structure
Digital Object Identifier: https://doi.org/10.1021/acsomega.6c01314
Tipo do material: Artigo de periódico
Acesso: openAccess
Aparece nas coleções:Artigo em periódico indexado (CNPDIA)

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