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Influence of Ligand Functionalization of UiO-66-Based Metal-Organic Frameworks When Used as Sorbents in Dispersive Solid-Phase Analytical Microextraction for Different Aqueous Organic Pollutants

Four metal-organic frameworks (MOFs), specifically UiO-66, UiO-66-NH(2), UiO-66-NO(2), and MIL-53(Al), were synthesized, characterized, and used as sorbents in a dispersive micro-solid phase extraction (D-µSPE) method for the determination of nine pollutants of different nature, including drugs, phe...

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Autores principales: Taima-Mancera, Iván, Rocío-Bautista, Priscilla, Pasán, Jorge, Ayala, Juan H., Ruiz-Pérez, Catalina, Afonso, Ana M., Lago, Ana B., Pino, Verónica
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6278427/
https://www.ncbi.nlm.nih.gov/pubmed/30400309
http://dx.doi.org/10.3390/molecules23112869
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author Taima-Mancera, Iván
Rocío-Bautista, Priscilla
Pasán, Jorge
Ayala, Juan H.
Ruiz-Pérez, Catalina
Afonso, Ana M.
Lago, Ana B.
Pino, Verónica
author_facet Taima-Mancera, Iván
Rocío-Bautista, Priscilla
Pasán, Jorge
Ayala, Juan H.
Ruiz-Pérez, Catalina
Afonso, Ana M.
Lago, Ana B.
Pino, Verónica
author_sort Taima-Mancera, Iván
collection PubMed
description Four metal-organic frameworks (MOFs), specifically UiO-66, UiO-66-NH(2), UiO-66-NO(2), and MIL-53(Al), were synthesized, characterized, and used as sorbents in a dispersive micro-solid phase extraction (D-µSPE) method for the determination of nine pollutants of different nature, including drugs, phenols, polycyclic aromatic hydrocarbons, and personal care products in environmental waters. The D-µSPE method, using these MOFs as sorbents and in combination with high-performance liquid chromatography (HPLC) and diode-array detection (DAD), was optimized. The optimization study pointed out to UiO-66-NO(2) as the best MOF to use in the multi-component determination. Furthermore, the utilization of isoreticular MOFs based on UiO-66 with the same topology but different functional groups, and MIL-53(Al) to compare with, allowed us for the first time to evaluate the influence of such functionalization of the ligand with regards to the efficiency of the D-µSPE-HPLC-DAD method. Optimum conditions included: 20 mg of UiO-66-NO(2) MOF in 20 mL of the aqueous sample, 3 min of agitation by vortex and 5 min of centrifugation, followed by the use of only 500 µL of acetonitrile as desorption solvent (once the MOF containing analytes was separated), 5 min of vortex and 5 min of centrifugation. The validation of the D-µSPE-HPLC-DAD method showed limits of detection down to 1.5 ng·L(−1), average relative recoveries of 107% for a spiked level of 1.50 µg·L(−1), and inter-day precision values with relative standard deviations lower than 14%, for the group of pollutants considered.
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spelling pubmed-62784272018-12-13 Influence of Ligand Functionalization of UiO-66-Based Metal-Organic Frameworks When Used as Sorbents in Dispersive Solid-Phase Analytical Microextraction for Different Aqueous Organic Pollutants Taima-Mancera, Iván Rocío-Bautista, Priscilla Pasán, Jorge Ayala, Juan H. Ruiz-Pérez, Catalina Afonso, Ana M. Lago, Ana B. Pino, Verónica Molecules Article Four metal-organic frameworks (MOFs), specifically UiO-66, UiO-66-NH(2), UiO-66-NO(2), and MIL-53(Al), were synthesized, characterized, and used as sorbents in a dispersive micro-solid phase extraction (D-µSPE) method for the determination of nine pollutants of different nature, including drugs, phenols, polycyclic aromatic hydrocarbons, and personal care products in environmental waters. The D-µSPE method, using these MOFs as sorbents and in combination with high-performance liquid chromatography (HPLC) and diode-array detection (DAD), was optimized. The optimization study pointed out to UiO-66-NO(2) as the best MOF to use in the multi-component determination. Furthermore, the utilization of isoreticular MOFs based on UiO-66 with the same topology but different functional groups, and MIL-53(Al) to compare with, allowed us for the first time to evaluate the influence of such functionalization of the ligand with regards to the efficiency of the D-µSPE-HPLC-DAD method. Optimum conditions included: 20 mg of UiO-66-NO(2) MOF in 20 mL of the aqueous sample, 3 min of agitation by vortex and 5 min of centrifugation, followed by the use of only 500 µL of acetonitrile as desorption solvent (once the MOF containing analytes was separated), 5 min of vortex and 5 min of centrifugation. The validation of the D-µSPE-HPLC-DAD method showed limits of detection down to 1.5 ng·L(−1), average relative recoveries of 107% for a spiked level of 1.50 µg·L(−1), and inter-day precision values with relative standard deviations lower than 14%, for the group of pollutants considered. MDPI 2018-11-03 /pmc/articles/PMC6278427/ /pubmed/30400309 http://dx.doi.org/10.3390/molecules23112869 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Taima-Mancera, Iván
Rocío-Bautista, Priscilla
Pasán, Jorge
Ayala, Juan H.
Ruiz-Pérez, Catalina
Afonso, Ana M.
Lago, Ana B.
Pino, Verónica
Influence of Ligand Functionalization of UiO-66-Based Metal-Organic Frameworks When Used as Sorbents in Dispersive Solid-Phase Analytical Microextraction for Different Aqueous Organic Pollutants
title Influence of Ligand Functionalization of UiO-66-Based Metal-Organic Frameworks When Used as Sorbents in Dispersive Solid-Phase Analytical Microextraction for Different Aqueous Organic Pollutants
title_full Influence of Ligand Functionalization of UiO-66-Based Metal-Organic Frameworks When Used as Sorbents in Dispersive Solid-Phase Analytical Microextraction for Different Aqueous Organic Pollutants
title_fullStr Influence of Ligand Functionalization of UiO-66-Based Metal-Organic Frameworks When Used as Sorbents in Dispersive Solid-Phase Analytical Microextraction for Different Aqueous Organic Pollutants
title_full_unstemmed Influence of Ligand Functionalization of UiO-66-Based Metal-Organic Frameworks When Used as Sorbents in Dispersive Solid-Phase Analytical Microextraction for Different Aqueous Organic Pollutants
title_short Influence of Ligand Functionalization of UiO-66-Based Metal-Organic Frameworks When Used as Sorbents in Dispersive Solid-Phase Analytical Microextraction for Different Aqueous Organic Pollutants
title_sort influence of ligand functionalization of uio-66-based metal-organic frameworks when used as sorbents in dispersive solid-phase analytical microextraction for different aqueous organic pollutants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6278427/
https://www.ncbi.nlm.nih.gov/pubmed/30400309
http://dx.doi.org/10.3390/molecules23112869
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