Characterization of the Porous Structure of HPLC Packings Based on Di(-Acrylic Phenyl)Sulphone and DVB

Studies of the porous structure of the polymeric microspheres synthesized from di( p -acrylic phenyl)sulphone (DAS), ( p -hydroxyphenyl- p -acrylic phenyl)sulphone (HAS) and divinylbenzene (DVB) are presented. The porous structure was characterized by the nitrogen adsorption method, inverse exclusio...

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Main Authors: B. Gawdzik, W. Majewski, T. Jabłońska-Pikus, J. Osypiuk, W. Charmas, B. Podkościelna
Format: Article
Language:English
Published: SAGE Publishing 2006-03-01
Series:Adsorption Science & Technology
Online Access:https://doi.org/10.1260/026361706778529191
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author B. Gawdzik
W. Majewski
T. Jabłońska-Pikus
J. Osypiuk
W. Charmas
B. Podkościelna
author_facet B. Gawdzik
W. Majewski
T. Jabłońska-Pikus
J. Osypiuk
W. Charmas
B. Podkościelna
author_sort B. Gawdzik
collection DOAJ
description Studies of the porous structure of the polymeric microspheres synthesized from di( p -acrylic phenyl)sulphone (DAS), ( p -hydroxyphenyl- p -acrylic phenyl)sulphone (HAS) and divinylbenzene (DVB) are presented. The porous structure was characterized by the nitrogen adsorption method, inverse exclusion chromatography and atomic force microscopy. To describe the tendency of the microspheres to swell, the swelling propensities and the swellability coefficient were also determined. The results show that both polymers studied can be used as packing materials in chromatography. Their porous structures are relatively stable since they are characterized by a high degree of crosslinking. In addition, the polymer ASP–OH containing reactive hydroxyl functional groups provides a convenient starting material for chemical modifications.
format Article
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institution Kabale University
issn 0263-6174
2048-4038
language English
publishDate 2006-03-01
publisher SAGE Publishing
record_format Article
series Adsorption Science & Technology
spelling doaj-art-fa4d4ad4919145b8a173a7742adb381f2025-01-02T23:37:27ZengSAGE PublishingAdsorption Science & Technology0263-61742048-40382006-03-012410.1260/026361706778529191Characterization of the Porous Structure of HPLC Packings Based on Di(-Acrylic Phenyl)Sulphone and DVBB. GawdzikW. MajewskiT. Jabłońska-PikusJ. OsypiukW. CharmasB. PodkościelnaStudies of the porous structure of the polymeric microspheres synthesized from di( p -acrylic phenyl)sulphone (DAS), ( p -hydroxyphenyl- p -acrylic phenyl)sulphone (HAS) and divinylbenzene (DVB) are presented. The porous structure was characterized by the nitrogen adsorption method, inverse exclusion chromatography and atomic force microscopy. To describe the tendency of the microspheres to swell, the swelling propensities and the swellability coefficient were also determined. The results show that both polymers studied can be used as packing materials in chromatography. Their porous structures are relatively stable since they are characterized by a high degree of crosslinking. In addition, the polymer ASP–OH containing reactive hydroxyl functional groups provides a convenient starting material for chemical modifications.https://doi.org/10.1260/026361706778529191
spellingShingle B. Gawdzik
W. Majewski
T. Jabłońska-Pikus
J. Osypiuk
W. Charmas
B. Podkościelna
Characterization of the Porous Structure of HPLC Packings Based on Di(-Acrylic Phenyl)Sulphone and DVB
Adsorption Science & Technology
title Characterization of the Porous Structure of HPLC Packings Based on Di(-Acrylic Phenyl)Sulphone and DVB
title_full Characterization of the Porous Structure of HPLC Packings Based on Di(-Acrylic Phenyl)Sulphone and DVB
title_fullStr Characterization of the Porous Structure of HPLC Packings Based on Di(-Acrylic Phenyl)Sulphone and DVB
title_full_unstemmed Characterization of the Porous Structure of HPLC Packings Based on Di(-Acrylic Phenyl)Sulphone and DVB
title_short Characterization of the Porous Structure of HPLC Packings Based on Di(-Acrylic Phenyl)Sulphone and DVB
title_sort characterization of the porous structure of hplc packings based on di acrylic phenyl sulphone and dvb
url https://doi.org/10.1260/026361706778529191
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