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Reduced Graphene Oxide Aerogels Cartridges for Solid Phase Extraction of Benzotriazoles

UV-benzotriazoles have been identified as water micropollutants that cause serious problems for human health and the environment. Their low concentration in water bodies complicates their detection by direct water analysis, slowing the corrective actions to avoid bioaccumulation. In this regard, the...

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Autores principales: Flores-López, Samantha L., Arenillas, Ana, Mikšík, Ivan, Menéndez, J. Angel, Montes-Morán, Miguel A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10052701/
https://www.ncbi.nlm.nih.gov/pubmed/36984399
http://dx.doi.org/10.3390/ma16062519
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author Flores-López, Samantha L.
Arenillas, Ana
Mikšík, Ivan
Menéndez, J. Angel
Montes-Morán, Miguel A.
author_facet Flores-López, Samantha L.
Arenillas, Ana
Mikšík, Ivan
Menéndez, J. Angel
Montes-Morán, Miguel A.
author_sort Flores-López, Samantha L.
collection PubMed
description UV-benzotriazoles have been identified as water micropollutants that cause serious problems for human health and the environment. Their low concentration in water bodies complicates their detection by direct water analysis, slowing the corrective actions to avoid bioaccumulation. In this regard, the use of graphene-based materials with a high affinity for non-polar molecules has been demonstrated to be a potential tool for the optimal separation and concentration of this type of molecules in solid phase extraction (SPE) processes. This work evaluates the potential of novel reduced graphene oxide aerogels (rGO) as extractants of mixtures of three UV-benzotriazoles in water at low concentrations. These rGO aerogels incorporate graphenic domains into a tough structure of polymeric chains by adding graphene oxide during the synthesis of resorcinol-formaldehyde gels. Aerogels with a different content and ordering of graphenic domains were obtained and characterized using Raman, XRD, SEM and nitrogen adsorption isotherms (−196 °C). The rGO aerogels that performed better as solid phase extractants were those containing 60% rGO. Aerogels with lower rGO contents (40%) required a high-temperature (2000 °C) treatment to render competitive results. The SPE methodology using selected rGO aerogels was optimized by varying the elution solvent, elution time and volume. The best performances, i.e., recoveries of 80–100% and enrichment factors of 12.5–50, were accomplished when using 0.8 mL of tetrahydrofuran (THF) as an elution solvent. As a result, a fast (10 min) and simple extraction method of UV-benzotriazoles in water was attained, achieving a detection limit of 1 ng mL(−1). Selected aerogels were finally tested for the SPE of spiked samples of river waters, showing a similar performance to that observed with synthetic mixtures.
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spelling pubmed-100527012023-03-30 Reduced Graphene Oxide Aerogels Cartridges for Solid Phase Extraction of Benzotriazoles Flores-López, Samantha L. Arenillas, Ana Mikšík, Ivan Menéndez, J. Angel Montes-Morán, Miguel A. Materials (Basel) Article UV-benzotriazoles have been identified as water micropollutants that cause serious problems for human health and the environment. Their low concentration in water bodies complicates their detection by direct water analysis, slowing the corrective actions to avoid bioaccumulation. In this regard, the use of graphene-based materials with a high affinity for non-polar molecules has been demonstrated to be a potential tool for the optimal separation and concentration of this type of molecules in solid phase extraction (SPE) processes. This work evaluates the potential of novel reduced graphene oxide aerogels (rGO) as extractants of mixtures of three UV-benzotriazoles in water at low concentrations. These rGO aerogels incorporate graphenic domains into a tough structure of polymeric chains by adding graphene oxide during the synthesis of resorcinol-formaldehyde gels. Aerogels with a different content and ordering of graphenic domains were obtained and characterized using Raman, XRD, SEM and nitrogen adsorption isotherms (−196 °C). The rGO aerogels that performed better as solid phase extractants were those containing 60% rGO. Aerogels with lower rGO contents (40%) required a high-temperature (2000 °C) treatment to render competitive results. The SPE methodology using selected rGO aerogels was optimized by varying the elution solvent, elution time and volume. The best performances, i.e., recoveries of 80–100% and enrichment factors of 12.5–50, were accomplished when using 0.8 mL of tetrahydrofuran (THF) as an elution solvent. As a result, a fast (10 min) and simple extraction method of UV-benzotriazoles in water was attained, achieving a detection limit of 1 ng mL(−1). Selected aerogels were finally tested for the SPE of spiked samples of river waters, showing a similar performance to that observed with synthetic mixtures. MDPI 2023-03-22 /pmc/articles/PMC10052701/ /pubmed/36984399 http://dx.doi.org/10.3390/ma16062519 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Flores-López, Samantha L.
Arenillas, Ana
Mikšík, Ivan
Menéndez, J. Angel
Montes-Morán, Miguel A.
Reduced Graphene Oxide Aerogels Cartridges for Solid Phase Extraction of Benzotriazoles
title Reduced Graphene Oxide Aerogels Cartridges for Solid Phase Extraction of Benzotriazoles
title_full Reduced Graphene Oxide Aerogels Cartridges for Solid Phase Extraction of Benzotriazoles
title_fullStr Reduced Graphene Oxide Aerogels Cartridges for Solid Phase Extraction of Benzotriazoles
title_full_unstemmed Reduced Graphene Oxide Aerogels Cartridges for Solid Phase Extraction of Benzotriazoles
title_short Reduced Graphene Oxide Aerogels Cartridges for Solid Phase Extraction of Benzotriazoles
title_sort reduced graphene oxide aerogels cartridges for solid phase extraction of benzotriazoles
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10052701/
https://www.ncbi.nlm.nih.gov/pubmed/36984399
http://dx.doi.org/10.3390/ma16062519
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