Javascript must be enabled to continue!
Accelerated ReaxFF Simulations of Vitrimers with Dynamic Covalent Adaptive Networks
View through CrossRef
Vitrimers are a novel class of sustainable polymers with dynamics covalent adaptive networks driven by bond exchange reactions between different constituents, making vitrimers reprocessable and recyclable. Current modeling approaches of bond exchange reactions fall short in realistically capturing the complete reaction pathways, which limit our understanding the viscoelastic properties of vitrimers. This research addresses these limitations by extending and employing Accelerated Reactive Molecular Dynamics (ReaxFF) technique, thus enabling a more accurate representation of vitrimer viscoelas- tic behavior at the molecular level. Bayesian optimization is employed to select force field parameters within the Accelerated ReaxFF framework, and an empirical function is proposed to model temperature dependency, thereby controlling reaction probabil- ities under varying temperatures. The extended framework is employed to simulate non-isothermal creep behavior of vitrimers under different applied stress levels, heating rates and numbers of reactions. The simulation results agree with experimental findings in literature, validating the robustness of the framework.
Title: Accelerated ReaxFF Simulations of Vitrimers with Dynamic Covalent Adaptive Networks
Description:
Vitrimers are a novel class of sustainable polymers with dynamics covalent adaptive networks driven by bond exchange reactions between different constituents, making vitrimers reprocessable and recyclable.
Current modeling approaches of bond exchange reactions fall short in realistically capturing the complete reaction pathways, which limit our understanding the viscoelastic properties of vitrimers.
This research addresses these limitations by extending and employing Accelerated Reactive Molecular Dynamics (ReaxFF) technique, thus enabling a more accurate representation of vitrimer viscoelas- tic behavior at the molecular level.
Bayesian optimization is employed to select force field parameters within the Accelerated ReaxFF framework, and an empirical function is proposed to model temperature dependency, thereby controlling reaction probabil- ities under varying temperatures.
The extended framework is employed to simulate non-isothermal creep behavior of vitrimers under different applied stress levels, heating rates and numbers of reactions.
The simulation results agree with experimental findings in literature, validating the robustness of the framework.
Related Results
Bio-based epoxy vitrimers from phenolic mixtures of lignin oxidative depolymerization
Bio-based epoxy vitrimers from phenolic mixtures of lignin oxidative depolymerization
Bio-based bisphenol compounds from lignin oxidative depolymerization-derived phenolic monomers exhibit great potential in epoxy resins, yet the existing technologies for the separa...
Impact of Cross-link Density on Polybutadiene Permanent and Vitrimer Networks
Impact of Cross-link Density on Polybutadiene Permanent and Vitrimer Networks
Vitrimers are polymer networks that undergo structural rearrangement through dynamic associative bond exchange without compromising overall topological connectivity. In this study,...
Polybutadiene Vitrimers with Tunable Epoxy Ratios: Preparation and Properties
Polybutadiene Vitrimers with Tunable Epoxy Ratios: Preparation and Properties
Traditional crosslinked diene rubber has excellent thermalāmechanical properties and solvent resistance, yet it is incapable of being recycled via universal molding or injecting. V...
The bio components in the vitrimers reprocessability: A meta- analysis study
The bio components in the vitrimers reprocessability: A meta- analysis study
Vitrimers consist of polymeric networks capable of reorganizing their topology without harming the integrity of theĀ material. These types of polymers have highly desirable properti...
Covalent Adaptable Networks (CANs)
Covalent Adaptable Networks (CANs)
Thermosets are known to be very reliable polymeric materials for high-performance and light-weight applications, due to their retained dimensional stability, chemical inertia and r...
ACM SIGCOMM computer communication review
ACM SIGCOMM computer communication review
At some point in the future, how far out we do not exactly know, wireless access to the Internet will outstrip all other forms of access bringing the freedom of mobility to the way...
Mixing ReaxFF Parameters for Transition Metal Oxides Using Force-Matching Method.
Mixing ReaxFF Parameters for Transition Metal Oxides Using Force-Matching Method.
Abstract
We present the development of the method for the refitting the ReaxFF parameters for a system consisting of the mixed transition metal oxides. We have tested sever...
Dynamic Covalent Hydrogels: Strong yet Dynamic
Dynamic Covalent Hydrogels: Strong yet Dynamic
Hydrogels are crosslinked polymer networks with time-dependent mechanical response. The overall mechanical properties are correlated with the dynamics of the crosslinks. Generally,...

