Water Effects on Molecular Adsorption of Poly(N-vinyl-2-pyrrolidone) on Cellulose Nanocrystals Surfaces: Molecular Dynamics Simulations

Models of interaction between a poly(N-vinyl-2-pyrrolidone) macromolecule and a fragment of I<sub>β</sub>-cellulose were built in a vacuum and water environment. The models were made to interpret the mechanism of interaction of the polymer and cellulose nanocrystals by the classical mole...

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Main Authors: Darya Gurina, Oleg Surov, Marina Voronova, Anatoly Zakharov, Mikhail Kiselev
Format: Article
Language:English
Published: MDPI AG 2019-07-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/12/13/2155
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spelling doaj-42e8be508c7d45559d07c4b54cfbb6932020-11-24T21:28:36ZengMDPI AGMaterials1996-19442019-07-011213215510.3390/ma12132155ma12132155Water Effects on Molecular Adsorption of Poly(N-vinyl-2-pyrrolidone) on Cellulose Nanocrystals Surfaces: Molecular Dynamics SimulationsDarya Gurina0Oleg Surov1Marina Voronova2Anatoly Zakharov3Mikhail Kiselev4G.A. Krestov Institute of Solution Chemistry of the Russian Academy of Sciences, 1 Akademicheskaya St., Ivanovo 153045, RussiaG.A. Krestov Institute of Solution Chemistry of the Russian Academy of Sciences, 1 Akademicheskaya St., Ivanovo 153045, RussiaG.A. Krestov Institute of Solution Chemistry of the Russian Academy of Sciences, 1 Akademicheskaya St., Ivanovo 153045, RussiaG.A. Krestov Institute of Solution Chemistry of the Russian Academy of Sciences, 1 Akademicheskaya St., Ivanovo 153045, RussiaG.A. Krestov Institute of Solution Chemistry of the Russian Academy of Sciences, 1 Akademicheskaya St., Ivanovo 153045, RussiaModels of interaction between a poly(N-vinyl-2-pyrrolidone) macromolecule and a fragment of I<sub>β</sub>-cellulose were built in a vacuum and water environment. The models were made to interpret the mechanism of interaction of the polymer and cellulose nanocrystals by the classical molecular dynamics method. The structural behavior of a poly(N-vinyl-2-pyrrolidone) macromolecule in water has been studied in terms of the radius of gyration, atom–atom radial distribution functions and number of hydrogen bonds. It was found that the polymer has a high affinity with the solvent and each monomer unit has on average 0.5 hydrogen bonds. The structural and energy characteristics of the polymer adsorption were investigated at different initial positions of the poly(N-vinyl-2-pyrrolidone) macromolecule relative to the cellulose fragment. It was observed that the polymer macromolecule was mainly adsorbed on the cellulose fragment in the globular form. Moreover, in the solvent the interaction of poly(N-vinyl-2-pyrrolidone) with the cellulose hydrophobic surface was stronger than that with the hydrophilic one. This study will show that the presence of water makes the interaction between the polymer and cellulose weaker than in a vacuum, and the polymer and cellulose mainly interact through their solvation shells.https://www.mdpi.com/1996-1944/12/13/2155cellulose nanocrystalspolyvinylpyrrolidoneadsorptionself-assemblymolecular dynamics
collection DOAJ
language English
format Article
sources DOAJ
author Darya Gurina
Oleg Surov
Marina Voronova
Anatoly Zakharov
Mikhail Kiselev
spellingShingle Darya Gurina
Oleg Surov
Marina Voronova
Anatoly Zakharov
Mikhail Kiselev
Water Effects on Molecular Adsorption of Poly(N-vinyl-2-pyrrolidone) on Cellulose Nanocrystals Surfaces: Molecular Dynamics Simulations
Materials
cellulose nanocrystals
polyvinylpyrrolidone
adsorption
self-assembly
molecular dynamics
author_facet Darya Gurina
Oleg Surov
Marina Voronova
Anatoly Zakharov
Mikhail Kiselev
author_sort Darya Gurina
title Water Effects on Molecular Adsorption of Poly(N-vinyl-2-pyrrolidone) on Cellulose Nanocrystals Surfaces: Molecular Dynamics Simulations
title_short Water Effects on Molecular Adsorption of Poly(N-vinyl-2-pyrrolidone) on Cellulose Nanocrystals Surfaces: Molecular Dynamics Simulations
title_full Water Effects on Molecular Adsorption of Poly(N-vinyl-2-pyrrolidone) on Cellulose Nanocrystals Surfaces: Molecular Dynamics Simulations
title_fullStr Water Effects on Molecular Adsorption of Poly(N-vinyl-2-pyrrolidone) on Cellulose Nanocrystals Surfaces: Molecular Dynamics Simulations
title_full_unstemmed Water Effects on Molecular Adsorption of Poly(N-vinyl-2-pyrrolidone) on Cellulose Nanocrystals Surfaces: Molecular Dynamics Simulations
title_sort water effects on molecular adsorption of poly(n-vinyl-2-pyrrolidone) on cellulose nanocrystals surfaces: molecular dynamics simulations
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2019-07-01
description Models of interaction between a poly(N-vinyl-2-pyrrolidone) macromolecule and a fragment of I<sub>β</sub>-cellulose were built in a vacuum and water environment. The models were made to interpret the mechanism of interaction of the polymer and cellulose nanocrystals by the classical molecular dynamics method. The structural behavior of a poly(N-vinyl-2-pyrrolidone) macromolecule in water has been studied in terms of the radius of gyration, atom–atom radial distribution functions and number of hydrogen bonds. It was found that the polymer has a high affinity with the solvent and each monomer unit has on average 0.5 hydrogen bonds. The structural and energy characteristics of the polymer adsorption were investigated at different initial positions of the poly(N-vinyl-2-pyrrolidone) macromolecule relative to the cellulose fragment. It was observed that the polymer macromolecule was mainly adsorbed on the cellulose fragment in the globular form. Moreover, in the solvent the interaction of poly(N-vinyl-2-pyrrolidone) with the cellulose hydrophobic surface was stronger than that with the hydrophilic one. This study will show that the presence of water makes the interaction between the polymer and cellulose weaker than in a vacuum, and the polymer and cellulose mainly interact through their solvation shells.
topic cellulose nanocrystals
polyvinylpyrrolidone
adsorption
self-assembly
molecular dynamics
url https://www.mdpi.com/1996-1944/12/13/2155
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