We performed dissipative particle dynamics (DPD) simulations to investigate the structure and cross-link formation dynamics of a thermoset polymer while interacting with a metal-oxide surface. For characterizing the polymer–surface interactions we used the surface excess, quantifying the surface selectivity of different functional groups. Mesoscopic polymer–surface interactions are determined by matching the surface excess, as computed with atomistic molecular dynamics (MD), with those for DPD, thus realizing a coupling between the mesoscopic and atomistic scales. In the structure prior to cross-linking, we observe that some functional groups prefer to be located at the interface while others are repelled. This largely determines the final ...
The chemical bonding at a metal/polymer interface is believed to play an important role in adhesion....
The impact of free surfaces on the mobility and conformational fluctuations of model polymer chains ...
We study the properties of a polycarbonate melt near a nickel surface as a model system for the inte...
We performed dissipative particle dynamics (DPD) simulations to investigate the structure and cross-...
Industrial applications such as production of high performance polymer-nanocomposites, semiconductor...
Meso-scale simulations are performed to obtain a fully cross-linked, equilibrated structure of an ep...
[[abstract]]This work presents a relatively simple simulation procedure to demonstrate the effects o...
We performed hierarchical multi-scale simulations to study the adhesion properties of various epoxy–...
International audienceWe employ a recently derived semirealistic set of coarse-grained interactions ...
Conducting polymers have attracted much attention concerning the possibility of their use as active ...
The surface properties of polymeric materials are generally determined by the chemical groups presen...
We study the structural and dynamic properties of a polymer melt in the vicinity of an adhesive soli...
Interfacial phenomena and the associated kinetic, thermodynamic and structural properties are releva...
This work deals with effects of polymer molecular weight, <i>W</i><sub>m</sub>, below the entangleme...
The chemical bonding at a metal/polymer interface is believed to play an important role in adhesion....
The impact of free surfaces on the mobility and conformational fluctuations of model polymer chains ...
We study the properties of a polycarbonate melt near a nickel surface as a model system for the inte...
We performed dissipative particle dynamics (DPD) simulations to investigate the structure and cross-...
Industrial applications such as production of high performance polymer-nanocomposites, semiconductor...
Meso-scale simulations are performed to obtain a fully cross-linked, equilibrated structure of an ep...
[[abstract]]This work presents a relatively simple simulation procedure to demonstrate the effects o...
We performed hierarchical multi-scale simulations to study the adhesion properties of various epoxy–...
International audienceWe employ a recently derived semirealistic set of coarse-grained interactions ...
Conducting polymers have attracted much attention concerning the possibility of their use as active ...
The surface properties of polymeric materials are generally determined by the chemical groups presen...
We study the structural and dynamic properties of a polymer melt in the vicinity of an adhesive soli...
Interfacial phenomena and the associated kinetic, thermodynamic and structural properties are releva...
This work deals with effects of polymer molecular weight, <i>W</i><sub>m</sub>, below the entangleme...
The chemical bonding at a metal/polymer interface is believed to play an important role in adhesion....
The impact of free surfaces on the mobility and conformational fluctuations of model polymer chains ...
We study the properties of a polycarbonate melt near a nickel surface as a model system for the inte...