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Modeling Chemical Reactions in Classical Molecular Dynamics SimulationsAn algorithm capable of incorporating multi-step reaction mechanisms into atomistic molecular dynamics (MD) simulations using traditional fixed valence force fields is proposed and implemented within the framework of LAMMPS (Large-scale Atomic Molecular Massively Parallel Simulator). This extension, referred to as fix bond/react, enables bonding topology modifications during a running MD simulation using pre- and post-reaction bonding templates to carry out a pre-specified reaction. Candidate reactants are first identified by interatomic separation, followed by the application of a generalized topology matching algorithm to confirm they match the pre-reaction template. This is followed by a topology conversion to match the post-reaction template and a dynamic relaxation to minimize high energy configurations. Two case studies, the condensation polymerization of nylon 6,6 and the formation of a highly-crosslinked epoxy, are simulated to demonstrate the robustness, stability, and speed of the algorithm. Improvements which could increase its utility are discussed.
Document ID
20190028368
Acquisition Source
Langley Research Center
Document Type
Accepted Manuscript (Version with final changes)
External Source(s)
Authors
Jacob R Gissinger
(University of Colorado Boulder Boulder, Colorado, United States)
Benjamin D Jensen
(Langley Research Center Hampton, Virginia, United States)
Kristopher E Wise
(Langley Research Center Hampton, Virginia, United States)
Date Acquired
August 1, 2019
Publication Date
September 18, 2017
Publication Information
Publication: Polymer
Publisher: Elsevier
Volume: 128
Issue Publication Date: October 16, 2017
ISSN: 0032-3861
Subject Category
Composite Materials
Report/Patent Number
NF1676L-27496
Report Number: NF1676L-27496
ISSN: 0032-3861
Funding Number(s)
PROJECT: STMD_057942
WBS: 057942.04.07.03
Distribution Limits
Public
Copyright
Public Use Permitted.
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