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Primitive chain network simulations for entangled DNA solutions
- Source :
- 131 (2009): 114906., info:cnr-pdr/source/autori:Y. Masubuchi, K. Furuichi, K. Horio, T. Uneyama, H. Watanabe, G. Ianniruberto, F. Greco, G. Marrucci/titolo:Primitive chain network simulations for entangled DNA solutions/doi:/rivista:/anno:2009/pagina_da:114906/pagina_a:/intervallo_pagine:114906/volume:131
- Publication Year :
- 2009
-
Abstract
- Molecular theories for polymer rheology are based on conformational dynamics of the polymeric chain. Hence, measurements directly related to molecular conformations appear more appealing than indirect ones obtained from rheology. In this study, primitive chain network simulations are compared to experimental data of entangled DNA solutions [Teixeira et al., Macromolecules 40, 2461 (2007)]. In addition to rheological comparisons of both linear and nonlinear viscoelasticities, a molecular extension measure obtained by Teixeira et al. through fluorescent microscopy is compared to simulations, in terms of both averages and distributions. The influence of flow on conformational distributions has never been simulated for the case of entangled polymers, and how DNA molecular individualism extends to the entangled regime is not known. The linear viscoelastic response and the viscosity growth curve in the nonlinear regime are found in good agreement with data for various DNA concentrations. Conversely, the molecular extension measure shows significant departures, even under equilibrium conditions. The reason for such discrepancies remains unknown.
- Subjects :
- Polymers
Surface Properties
General Physics and Astronomy
DNA Solutions
Viscoelasticity
Rheology
Computational chemistry
Molecule
Computer Simulation
Statistical physics
Physical and Theoretical Chemistry
Elasticity (economics)
chemistry.chemical_classification
Quantitative Biology::Biomolecules
Molecular Structure
Chemistry
Viscosity
Polymer
DNA
Local Area Networks
Elasticity
Condensed Matter::Soft Condensed Matter
Solutions
Nonlinear system
Models, Chemical
Shear Strength
Macromolecule
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- 131 (2009): 114906., info:cnr-pdr/source/autori:Y. Masubuchi, K. Furuichi, K. Horio, T. Uneyama, H. Watanabe, G. Ianniruberto, F. Greco, G. Marrucci/titolo:Primitive chain network simulations for entangled DNA solutions/doi:/rivista:/anno:2009/pagina_da:114906/pagina_a:/intervallo_pagine:114906/volume:131
- Accession number :
- edsair.doi.dedup.....c9b7b564316109e47a70f9f32ac3ccc5