Molecular modeling of interfaces between cellulose crystals and surrounding molecules: Effects of caprolactone surface grafting |
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Authors: | Malin Bergenstrå hle,Lars A. Berglund |
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Affiliation: | a KTH Department of Fibre and Polymer Technology, SE-10044 Stockholm, Sweden b Centre de Recherches sur les Macromolécules Végétales (CERMAV-CNRS) (affiliated with Université Joseph Fourier, and member of the Institut de Chimie Moléculaire de Grenoble), BP53, 38041, Grenoble Cedex 9, France |
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Abstract: | A technical problem in cellulosic nanocomposite materials is the weak interaction between hydrophilic cellulose and hydrophobic polymer matrices. One approach to solve this difficulty is to chemically graft monomers of the matrix polymer onto the cellulose surface. An important question is to understand the effect such surface modification has on the interfacial properties. Semi-empirical approaches to estimate work of adhesion based on surface energies do not provide information on specific molecular interactions. Details about these interactions were obtained using molecular dynamics (MD) simulation. Cellulose interfaces with water and caprolactone medium were modeled with different amounts of grafted caprolactone. The modification lead to an increased work of adhesion between the surface and its surrounding medium. Furthermore, the MD simulations showed that the interaction between cellulose, both modified and non-modified, and surrounding medium is dominated by Coulomb interactions, predominantly as hydrogen bonds. |
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Keywords: | Cellulose Molecular dynamics simulation Surface modification Work of adhesion |
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