Molecular Modelling of Selected Phthalates and Their Interactions with Stationary Phases in Solid-Phase Microextraction

In this work, solid-phase microextraction of six phthalates from methanol and aqueous solutions were carried out. Polar polyacrylate (PA) and non-polar polydimethylsiloxane (PDMS) were used as stationary phases. HyperChem 8.0 software was used for the optimization of the geometry of these six phthal...

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Main Authors: Dariusz Wideł, Jerzy Oszczudłowski, Zygfryd Witkiewicz
Format: Article
Language:English
Published: SAGE Publishing 2015-08-01
Series:Adsorption Science & Technology
Online Access:https://doi.org/10.1260/0263-6174.33.6-8.659
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author Dariusz Wideł
Jerzy Oszczudłowski
Zygfryd Witkiewicz
author_facet Dariusz Wideł
Jerzy Oszczudłowski
Zygfryd Witkiewicz
author_sort Dariusz Wideł
collection DOAJ
description In this work, solid-phase microextraction of six phthalates from methanol and aqueous solutions were carried out. Polar polyacrylate (PA) and non-polar polydimethylsiloxane (PDMS) were used as stationary phases. HyperChem 8.0 software was used for the optimization of the geometry of these six phthalates and their interactions with stationary phases. Extracted samples were analyzed using gas chromatography coupled with mass spectrometry. In the analysis of phthalates extracted from methanol solution, the best extraction efficiency was obtained for the PA phase, whereas for the extraction from aqueous solution, higher efficiency was obtained for the PDMS phase.
format Article
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institution Kabale University
issn 0263-6174
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publishDate 2015-08-01
publisher SAGE Publishing
record_format Article
series Adsorption Science & Technology
spelling doaj-art-a6905654937243f29582af145294eaf02025-01-02T22:37:24ZengSAGE PublishingAdsorption Science & Technology0263-61742048-40382015-08-013310.1260/0263-6174.33.6-8.659Molecular Modelling of Selected Phthalates and Their Interactions with Stationary Phases in Solid-Phase MicroextractionDariusz Wideł0Jerzy Oszczudłowski1Zygfryd Witkiewicz2Jan Kochanowski University, Institute of Chemistry, Świet̨okrzyska 15G Street, 25-406 Kielce, Poland.Jan Kochanowski University, Institute of Chemistry, Świet̨okrzyska 15G Street, 25-406 Kielce, Poland.Military University of Technology, Kaliskiego 2 Street, 00-908 Warsaw; COBRABiD, Łucka 15 Street, 00-842 Warsaw, Poland.In this work, solid-phase microextraction of six phthalates from methanol and aqueous solutions were carried out. Polar polyacrylate (PA) and non-polar polydimethylsiloxane (PDMS) were used as stationary phases. HyperChem 8.0 software was used for the optimization of the geometry of these six phthalates and their interactions with stationary phases. Extracted samples were analyzed using gas chromatography coupled with mass spectrometry. In the analysis of phthalates extracted from methanol solution, the best extraction efficiency was obtained for the PA phase, whereas for the extraction from aqueous solution, higher efficiency was obtained for the PDMS phase.https://doi.org/10.1260/0263-6174.33.6-8.659
spellingShingle Dariusz Wideł
Jerzy Oszczudłowski
Zygfryd Witkiewicz
Molecular Modelling of Selected Phthalates and Their Interactions with Stationary Phases in Solid-Phase Microextraction
Adsorption Science & Technology
title Molecular Modelling of Selected Phthalates and Their Interactions with Stationary Phases in Solid-Phase Microextraction
title_full Molecular Modelling of Selected Phthalates and Their Interactions with Stationary Phases in Solid-Phase Microextraction
title_fullStr Molecular Modelling of Selected Phthalates and Their Interactions with Stationary Phases in Solid-Phase Microextraction
title_full_unstemmed Molecular Modelling of Selected Phthalates and Their Interactions with Stationary Phases in Solid-Phase Microextraction
title_short Molecular Modelling of Selected Phthalates and Their Interactions with Stationary Phases in Solid-Phase Microextraction
title_sort molecular modelling of selected phthalates and their interactions with stationary phases in solid phase microextraction
url https://doi.org/10.1260/0263-6174.33.6-8.659
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