Title of article
Computer simulation of polypropylene/organoclay nanocomposites: characterization of atomic scale structure and prediction of binding energy
Author/Authors
Toth، نويسنده , , Radovan and Coslanich، نويسنده , , Alessandro and Ferrone، نويسنده , , Marco and Fermeglia، نويسنده , , Maurizio and Pricl، نويسنده , , Sabrina and Miertus، نويسنده , , Stanislav and Chiellini، نويسنده , , Emo، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2004
Pages
9
From page
8075
To page
8083
Abstract
Molecular simulation techniques are used to explore and characterize the atomic scale structure, and to predict binding energies and basal spacing of polymer/clay nanocomposites based on polypropylene (PP) and maleated polypropylene (PPMA), montmorillonite (MMT), and different alkylammonium ions (quats) as surfactants. Our evidences suggest that shorter hydrocarbonic chains are more effective in producing favorable binding energies with respect to longer ones, and the substitutions of hydrogen atoms with polar groups on the quaternary ammonium salt (quat) generally results in greater interaction between quat and both polymer and clay. Under the hypothesis, that montmorillonite platelets are uniformly dispersed in a polymer matrix, the modified polypropylene yields higher interfacial strength with clay than neat polypropylene. The use of neat PP and quats with higher molecular volume offer the higher values of the basal spacing and thus, in principle, they should be more effective in the exfoliation process.
Keywords
Polypropylene/clay nanocomposites , Binding energies , molecular simulations
Journal title
Polymer
Serial Year
2004
Journal title
Polymer
Record number
1722399
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