Pseudo-zwitterionic microvesicles for sustained urea release

Zwitterionic microvesicles formed by catanionic system, based on sodium dodecyl sulfate and hexadecyltrimethyl ammonium bromide, have been investigated for sustained urea release using UV–visible absorption spectroscopy. The change in variables such as temperature, sonication time and initial urea c...

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Main Authors: Bibi Iram, Kousar Tasleem, Shah Syed W.H., Rehman Wajid, Ali Farman
Format: Article
Language:English
Published: Serbian Chemical Society 2020-01-01
Series:Journal of the Serbian Chemical Society
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0352-5139/2020/0352-51391900135B.pdf
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spelling doaj-652dc8c32bf746ccbd9841b947e14ff52020-11-25T03:46:37ZengSerbian Chemical Society Journal of the Serbian Chemical Society0352-51391820-74212020-01-0185449350310.2298/JSC190822135B0352-51391900135BPseudo-zwitterionic microvesicles for sustained urea releaseBibi Iram0Kousar Tasleem1Shah Syed W.H.2Rehman Wajid3Ali Farman4Department of Chemistry, Hazara University, Mansehra, PakistanDepartment of Chemistry, Hazara University, Mansehra, PakistanDepartment of Chemistry, Hazara University, Mansehra, PakistanDepartment of Chemistry, Hazara University, Mansehra, PakistanDepartment of Chemistry, Hazara University, Mansehra, PakistanZwitterionic microvesicles formed by catanionic system, based on sodium dodecyl sulfate and hexadecyltrimethyl ammonium bromide, have been investigated for sustained urea release using UV–visible absorption spectroscopy. The change in variables such as temperature, sonication time and initial urea concentration was related to urea entrapment efficiency and release from microvesicles. Korsmeyer–Peppas model was applied to highlight release mechanism and kinetics. Both diffusion and erosion were responsible for urea release and rate constant varied with change in conditions. The quantification of association between urea and catanionic vesicles in terms of binding constant (Kbin) and binding free energy showed that urea binding was thermodynamically favored. Our results indicate that biocompatible pseudo-zwitterionic vesicles have enormous potential to act as sustained release system for nitrogenous fertilizers such as urea.http://www.doiserbia.nb.rs/img/doi/0352-5139/2020/0352-51391900135B.pdfcontrolled-releasesurfactant vesiclesfertilizer
collection DOAJ
language English
format Article
sources DOAJ
author Bibi Iram
Kousar Tasleem
Shah Syed W.H.
Rehman Wajid
Ali Farman
spellingShingle Bibi Iram
Kousar Tasleem
Shah Syed W.H.
Rehman Wajid
Ali Farman
Pseudo-zwitterionic microvesicles for sustained urea release
Journal of the Serbian Chemical Society
controlled-release
surfactant vesicles
fertilizer
author_facet Bibi Iram
Kousar Tasleem
Shah Syed W.H.
Rehman Wajid
Ali Farman
author_sort Bibi Iram
title Pseudo-zwitterionic microvesicles for sustained urea release
title_short Pseudo-zwitterionic microvesicles for sustained urea release
title_full Pseudo-zwitterionic microvesicles for sustained urea release
title_fullStr Pseudo-zwitterionic microvesicles for sustained urea release
title_full_unstemmed Pseudo-zwitterionic microvesicles for sustained urea release
title_sort pseudo-zwitterionic microvesicles for sustained urea release
publisher Serbian Chemical Society
series Journal of the Serbian Chemical Society
issn 0352-5139
1820-7421
publishDate 2020-01-01
description Zwitterionic microvesicles formed by catanionic system, based on sodium dodecyl sulfate and hexadecyltrimethyl ammonium bromide, have been investigated for sustained urea release using UV–visible absorption spectroscopy. The change in variables such as temperature, sonication time and initial urea concentration was related to urea entrapment efficiency and release from microvesicles. Korsmeyer–Peppas model was applied to highlight release mechanism and kinetics. Both diffusion and erosion were responsible for urea release and rate constant varied with change in conditions. The quantification of association between urea and catanionic vesicles in terms of binding constant (Kbin) and binding free energy showed that urea binding was thermodynamically favored. Our results indicate that biocompatible pseudo-zwitterionic vesicles have enormous potential to act as sustained release system for nitrogenous fertilizers such as urea.
topic controlled-release
surfactant vesicles
fertilizer
url http://www.doiserbia.nb.rs/img/doi/0352-5139/2020/0352-51391900135B.pdf
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AT shahsyedwh pseudozwitterionicmicrovesiclesforsustainedurearelease
AT rehmanwajid pseudozwitterionicmicrovesiclesforsustainedurearelease
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