A Systematic Coarse-graining Approach for High-molecular Weight Polymers
ORAL
Abstract
A major challenge in the study of both natural and synthetic polymer systems is the theory-based design of polymers with desired properties. While computational statistical mechanics provides a framework to establish structure-property relationships that facilitate design, many important phenomena require the study of time- and length scales that are beyond the capabilities of atomistic molecular dynamics and thus require different simulation strategies. In this talk, we discuss a systematic coarse-graining approach that enables study of systems at targeted resolution. The approach, which utilizes basic concepts from graph theory, provides an unambiguous and automated way to generate coarse-grained representations that preserve chemical topology and are thus sensitive to chemical substitutions. We highlight this approach in application to several high-molecular weight polysaccharides and examinethe properties for several polysaccharides at different degrees of resolution. We further assess the performance of both traditional and machine-learning parameterization schemes. The methodology described provides a framework that should be useful for coarse-grained study of various soft matter systems.
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Presenters
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Jean-Yves Delannoy
Solvay
Authors
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Michael Webb
Argonne Natl Lab
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Jean-Yves Delannoy
Solvay
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Juan De Pablo
Institute for Molecular Engineering, The University of Chicago, Institute for Molecular Engineering, Univ of Chicago, Institute for molecular engineering, The University of Chicago, University of Chicago, Univ of Chicago, Institute for Molecular Engineering, University of Chicago, The Institute for Molecular Engineering, The University of Chicago, Institute of Molecular Engineering, University of Chicago