Computational modeling and experimental infrared spectroscopy of hydrogen bonding interactions in polyvinyl alcohol-starch blends

This study aims to investigate the hydrogen bonding interactions in polyvinyl alcohol (PVOH)–starch blends. Semi-empirical AM1 (Austin Model 1) and PM3 (Parameterized Austin Model 3) methods were employed to model the blending. Binding energies, vibrational frequencies and solubility parameters resu...

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Main Authors: Lee, Tin Sin, Wan Abd. Rahman, Wan Aizan, Rahmat, Abdul Razak, Samad, A. A.
Format: Article
Published: Elsevier BV 2010
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Online Access:http://eprints.utm.my/id/eprint/22972/
https://doi.org/10.1016/j.polymer.2010.01.021
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spelling my.utm.229722018-03-22T10:31:36Z http://eprints.utm.my/id/eprint/22972/ Computational modeling and experimental infrared spectroscopy of hydrogen bonding interactions in polyvinyl alcohol-starch blends Lee, Tin Sin Wan Abd. Rahman, Wan Aizan Rahmat, Abdul Razak Samad, A. A. TP Chemical technology This study aims to investigate the hydrogen bonding interactions in polyvinyl alcohol (PVOH)–starch blends. Semi-empirical AM1 (Austin Model 1) and PM3 (Parameterized Austin Model 3) methods were employed to model the blending. Binding energies, vibrational frequencies and solubility parameters results were used to analyze the compatibility and stability of the blends. Besides that, experimental infrared spectroscopy was also conducted to validate the modeling results. The computed negative binding energies justified the stability of the blending. On the other hand, the solubility parameters of PVOH and starch modeling complexes have been found close to each other. This confirms that PVOH and starch are compatible blends. In addition, vibrational frequency analysis of these molecular complexes has exhibited that the hydroxyl group shifts to lower wavenumbers due to formation of hydrogen bonds. Findings from the experimental infrared spectroscopy have shown agreement with computational vibrational frequency results. The wavenumbers of the specimens increase is dependent on the ratios of PVOH in the blends. Such increment indicates that PVOH and starch interact in a harmonize manner and the blending is compatible. Elsevier BV 2010 Article PeerReviewed Lee, Tin Sin and Wan Abd. Rahman, Wan Aizan and Rahmat, Abdul Razak and Samad, A. A. (2010) Computational modeling and experimental infrared spectroscopy of hydrogen bonding interactions in polyvinyl alcohol-starch blends. Polymer, 51 (5). 1206 - 1211. ISSN 0032-3861 https://doi.org/10.1016/j.polymer.2010.01.021 DOI:10.1016/j.polymer.2010.01.021
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TP Chemical technology
spellingShingle TP Chemical technology
Lee, Tin Sin
Wan Abd. Rahman, Wan Aizan
Rahmat, Abdul Razak
Samad, A. A.
Computational modeling and experimental infrared spectroscopy of hydrogen bonding interactions in polyvinyl alcohol-starch blends
description This study aims to investigate the hydrogen bonding interactions in polyvinyl alcohol (PVOH)–starch blends. Semi-empirical AM1 (Austin Model 1) and PM3 (Parameterized Austin Model 3) methods were employed to model the blending. Binding energies, vibrational frequencies and solubility parameters results were used to analyze the compatibility and stability of the blends. Besides that, experimental infrared spectroscopy was also conducted to validate the modeling results. The computed negative binding energies justified the stability of the blending. On the other hand, the solubility parameters of PVOH and starch modeling complexes have been found close to each other. This confirms that PVOH and starch are compatible blends. In addition, vibrational frequency analysis of these molecular complexes has exhibited that the hydroxyl group shifts to lower wavenumbers due to formation of hydrogen bonds. Findings from the experimental infrared spectroscopy have shown agreement with computational vibrational frequency results. The wavenumbers of the specimens increase is dependent on the ratios of PVOH in the blends. Such increment indicates that PVOH and starch interact in a harmonize manner and the blending is compatible.
format Article
author Lee, Tin Sin
Wan Abd. Rahman, Wan Aizan
Rahmat, Abdul Razak
Samad, A. A.
author_facet Lee, Tin Sin
Wan Abd. Rahman, Wan Aizan
Rahmat, Abdul Razak
Samad, A. A.
author_sort Lee, Tin Sin
title Computational modeling and experimental infrared spectroscopy of hydrogen bonding interactions in polyvinyl alcohol-starch blends
title_short Computational modeling and experimental infrared spectroscopy of hydrogen bonding interactions in polyvinyl alcohol-starch blends
title_full Computational modeling and experimental infrared spectroscopy of hydrogen bonding interactions in polyvinyl alcohol-starch blends
title_fullStr Computational modeling and experimental infrared spectroscopy of hydrogen bonding interactions in polyvinyl alcohol-starch blends
title_full_unstemmed Computational modeling and experimental infrared spectroscopy of hydrogen bonding interactions in polyvinyl alcohol-starch blends
title_sort computational modeling and experimental infrared spectroscopy of hydrogen bonding interactions in polyvinyl alcohol-starch blends
publisher Elsevier BV
publishDate 2010
url http://eprints.utm.my/id/eprint/22972/
https://doi.org/10.1016/j.polymer.2010.01.021
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score 13.18916