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Efficient removal of methylene blue and ciprofloxacin from aqueous solution using flower-like, nanostructured ZnO coating under UV irradiation

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dc.contributor.author Tiron, Vasile
dc.contributor.author Ciolan, Mihai-Alexandru
dc.contributor.author Bulai, Georgiana
dc.contributor.author Mihalache, Gabriela
dc.contributor.author Lipșa, Florin-Daniel
dc.contributor.author Jijie, Roxana
dc.date.accessioned 2024-03-05T13:30:10Z
dc.date.available 2024-03-05T13:30:10Z
dc.date.issued 2022-06-26
dc.identifier.citation Tiron, Vasile, Mihai Alexandru Ciolan, Georgiana Bulai, Gabriela Mihalache, Florin Daniel Lipsa, Roxana Jijie. 2022. "Efficient Removal of Methylene Blue and Ciprofloxacin from Aqueous Solution Using Flower-like, Nanostructured ZnO Coating under UV Irradiation". Nanomaterials 12, no. 13: 2193-2202. https://doi.org/10.3390/nano12132193. en_US
dc.identifier.uri https://repository.iuls.ro/xmlui/handle/20.500.12811/3642
dc.identifier.uri https://www.mdpi.com/2079-4991/12/13/2193
dc.description.abstract Flower-like ZnO architectures assembled with many nanorods were successfully synthesized through Thermionic Vacuum Arc, operated both in direct current (DC-TVA) and a pulsed mode (PTVA), and coupled with annealing in an oxygen atmosphere. The prepared coatings were analysed by scanning-electron microscopy with energy-dispersive X-ray-spectroscopy (SEM-EDX), X-ray-diffraction (XRD), and photoluminescence (PL) measurements. By simply modifying the TVA operation mode, the morphology and uniformity of ZnO nanorods can be tuned. The photocatalytic performance of synthesized nanostructured ZnO coatings was measured by the degradation of methylene-blue (MB) dye and ciprofloxacin (Cipro) antibiotic. The ZnO (PTVA) showed enhancing results regarding the photodegradation of target contaminants. About 96% of MB molecules were removed within 60 min of UV irradiation, with a rate constant of 0.058 min􀀀1, which is almost nine times higher than the value of ZnO (DC-TVA). As well, ZnO (PTVA) presented superior photocatalytic activity towards the decomposition of Cipro, after 240 min of irradiation, yielding 96% degradation efficiency. Moreover, the agar-well diffusion assay performance against both Gram-positive and Gram-negative bacteria confirms the degradation of antibiotic molecules by the UV/ZnO (PTVA) approach, without the formation of secondary hazardous products during the photocatalysis process. Repeated cyclic usage of coatings revealed excellent reusability and operational stability. en_US
dc.language.iso en en_US
dc.publisher MDPI en_US
dc.rights Attribution 4.0 International (CC BY 4.0)
dc.rights.uri http://creativecommons.org/licenses/by/4.0
dc.subject Thermionic Vacuum Arc en_US
dc.subject zinc-oxide coating en_US
dc.subject flower-like architectures en_US
dc.subject photocatalysis en_US
dc.subject methylene blue en_US
dc.subject ciprofloxacin en_US
dc.title Efficient removal of methylene blue and ciprofloxacin from aqueous solution using flower-like, nanostructured ZnO coating under UV irradiation en_US
dc.type Article en_US
dc.author.affiliation Vasile Tiron, Mihai Alexandru Ciolan, Research Center on Advanced Materials and Technologies, Department of Exact and Natural Sciences, Institute of Interdisciplinary Research, Alexandru Ioan Cuza University of Iasi, Iasi 700506, Romania
dc.author.affiliation Georgiana Bulai, Gabriela Mihalache, Integrated Center of Environmental Science Studies in the North-Eastern Development Region (CERNESIM), Department of Exact and Natural Sciences, Institute of Interdisciplinary Research, Alexandru Ioan Cuza University of Iasi, Iasi 700506, Romania
dc.author.affiliation Gabriela Mihalache, Department of Horticultural Technologies, “Ion Ionescu de la Brad” University of Life Sciences, M. Sadoveanu Alley, No. 3, Iasi 700490, Romania
dc.author.affiliation Florin Daniel Lipsa, Faculty of Agriculture, “Ion Ionescu de la Brad” University of Life Sciences, M. Sadoveanu Alley, No. 3, Iasi 700490, Romania
dc.author.affiliation Roxana Jijie, Department of Exact and Natural Sciences, Institute of Interdisciplinary Research, Alexandru Ioan Cuza University of Iasi, Iasi 700506, Romania
dc.publicationName Nanomaterials
dc.volume 12
dc.issue 13
dc.publicationDate 2022
dc.startingPage 2193
dc.endingPage 2202
dc.identifier.eissn 2079-4991
dc.identifier.doi 10.3390/nano12132193


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Attribution 4.0 International (CC BY 4.0) Except where otherwise noted, this item's license is described as Attribution 4.0 International (CC BY 4.0)