Computational Materials Science2022,Vol.20810.DOI:10.1016/j.commatsci.2022.111315

Substitution effect in the graph model of polymerisation parametrised by atomistic simulations

Jenei, Mark Elliott, James A.
Computational Materials Science2022,Vol.20810.DOI:10.1016/j.commatsci.2022.111315

Substitution effect in the graph model of polymerisation parametrised by atomistic simulations

Jenei, Mark 1Elliott, James A.1
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作者信息

  • 1. Univ Cambridge
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Abstract

Reactive Molecular Dynamics simulations were run on three epoxy-amine thermoset systems, with different hardener monomer functionalities. From the obtained reference data, the degree dependence of the monomer reactivity was obtained as a function of the conversion of functional groups. Monomer reactivities were calculated and used to parametrise a polymer model including the First Shell Substitution Effect (FSSE). The model is used to run numerical simulations on a graph. Results are compared to results from graph simulations using the independent functional groups model (ideal polymerisation), and from the benchmark Molecular Dynamics simulations. With the parametrised FSSE model, it is possible to give more accurate predictions of the relevant properties of the polymer, such as the gel point.

Key words

Polymer modelling/Molecular dynamics/First shell substitution effect/Random graph theory/CROSS-LINKED EPOXY/MOLECULAR-SIZE DISTRIBUTION/FREE-RADICAL POLYMERIZATION/MECHANICAL-PROPERTIES/NETWORK FORMATION/AB(2) MONOMER/POLYMERS/DYNAMICS/KINETICS/POLYCONDENSATION

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出版年

2022
Computational Materials Science

Computational Materials Science

EISCI
ISSN:0927-0256
参考文献量61
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