4.7 Article

A coarse-grain model for entangled polyethylene melts and polyethylene crystallization

Journal

JOURNAL OF CHEMICAL PHYSICS
Volume 150, Issue 24, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.5092229

Keywords

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Funding

  1. U.S. Army Research Laboratory [W911NF-16-2-0189, W911NF-18-S-0269]
  2. National Science Foundation [1625061]
  3. JSPS
  4. Sheikh Saqr Research Fellowship

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The Shinoda-DeVane-Klein (SDK) model is herein demonstrated to be a viable coarse-grain model for performing molecular simulations of polyethylene (PE), affording new opportunities to advance molecular-level, scientific understanding of PE materials and processes. Both structural and dynamical properties of entangled PE melts are captured by the SDK model, which also recovers important aspects of PE crystallization phenomenology. Importantly, the SDK model can be used to represent a variety of materials beyond PE and has a simple functional form, making it unique among coarse-grain PE models. This study expands the suite of tools for studying PE in silico and paves the way for future work probing PE and PE-based composites at the molecular level. Published under license by AIP Publishing.

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