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Multiscale Modeling of Coarse-Grained Macromolecular Liquids
- Source :
- The Journal of Physical Chemistry B. 113:11876-11886
- Publication Year :
- 2009
- Publisher :
- American Chemical Society (ACS), 2009.
-
Abstract
- A first-principle multiscale modeling approach is presented, which is derived from the solution of the Ornstein-Zernike equation for the coarse-grained representation of polymer liquids. The approach is analytical, and for this reason is transferable. It is here applied to determine the structure of several polymeric systems, which have different parameter values, such as molecular length, monomeric structure, local flexibility, and thermodynamic conditions. When the pair distribution function obtained from this procedure is compared with the results from a full atomistic simulation, it shows quantitative agreement. Moreover, the multiscale procedure accurately captures both large and local scale properties while remaining computationally advantageous.
- Subjects :
- chemistry.chemical_classification
Materials science
010304 chemical physics
Local scale
Structure (category theory)
Pair distribution function
Polymer
01 natural sciences
Multiscale modeling
Surfaces, Coatings and Films
chemistry
0103 physical sciences
Materials Chemistry
Statistical physics
Physical and Theoretical Chemistry
010306 general physics
Representation (mathematics)
Macromolecule
Subjects
Details
- ISSN :
- 15205207 and 15206106
- Volume :
- 113
- Database :
- OpenAIRE
- Journal :
- The Journal of Physical Chemistry B
- Accession number :
- edsair.doi.dedup.....4040f6c541cfeeba322583993c56cae0
- Full Text :
- https://doi.org/10.1021/jp905071w