We present a general approach to isolate chemical reaction mechanism as an independently controllable variable across chemically distinct systems. Modern approaches to reduce the computational expense of molecular dynamics simulations often group multiple atoms into a single “coarse-grained” interaction site, which leads to a loss of chemical resolution. In this work we convert this shortcoming into a feature and use identical coarse-grained models to represent molecules that share nonreactive characteristics but react by different mechanisms. As a proof of concept, we use this approach to simulate and investigate distinct, yet similar, trifunctional isocyanurate resin formulations that polymerize by either chain- or step-growth. Because th...
Polymers can be theoretically and computationally described by models pertaining to different length...
We present a reactive dynamic mean-field density functional method that gives insight in pathway con...
This article presents the application of the reactive step molecular dynamics simulation method [M. ...
We present a general approach to isolate chemical reaction mechanism as an independently controllabl...
We develop novel parallel algorithms that allow molecular dynamics simulations in which byproduct mo...
Classical Molecular Dynamics (MD) simulations provide insight into the properties of many soft-matte...
Chemical reactions are ubiquitous in both materials and the biophysical sciences. While coarse-grain...
Simulation studies of step-growth polymerization, e.g., polymerization of polyurethane systems, hold...
The study of polymer-based composites is a challenging multiscale problem, involving multiple time a...
Computer simulations of condensed phases and biochemical systems have lead to profound new insight i...
To investigate the complex process of polymer crystallisation during polymerisation, we develop a mo...
The irreversible polymerization of a monomer liquid has been studied by molecular-dynamics simulatio...
\u3cp\u3eSimulation studies of step-growth polymerization, e.g., polymerization of polyurethane syst...
We present a reactive dynamic mean-field density functional method that gives insight in pathway con...
Thesis (Ph.D.)--University of Washington, 2015The study of chemical reactions is a foundation of che...
Polymers can be theoretically and computationally described by models pertaining to different length...
We present a reactive dynamic mean-field density functional method that gives insight in pathway con...
This article presents the application of the reactive step molecular dynamics simulation method [M. ...
We present a general approach to isolate chemical reaction mechanism as an independently controllabl...
We develop novel parallel algorithms that allow molecular dynamics simulations in which byproduct mo...
Classical Molecular Dynamics (MD) simulations provide insight into the properties of many soft-matte...
Chemical reactions are ubiquitous in both materials and the biophysical sciences. While coarse-grain...
Simulation studies of step-growth polymerization, e.g., polymerization of polyurethane systems, hold...
The study of polymer-based composites is a challenging multiscale problem, involving multiple time a...
Computer simulations of condensed phases and biochemical systems have lead to profound new insight i...
To investigate the complex process of polymer crystallisation during polymerisation, we develop a mo...
The irreversible polymerization of a monomer liquid has been studied by molecular-dynamics simulatio...
\u3cp\u3eSimulation studies of step-growth polymerization, e.g., polymerization of polyurethane syst...
We present a reactive dynamic mean-field density functional method that gives insight in pathway con...
Thesis (Ph.D.)--University of Washington, 2015The study of chemical reactions is a foundation of che...
Polymers can be theoretically and computationally described by models pertaining to different length...
We present a reactive dynamic mean-field density functional method that gives insight in pathway con...
This article presents the application of the reactive step molecular dynamics simulation method [M. ...