AbstractWe model high molecular weight homopolymers in semidilute concentration via Dissipative Particle Dynamics (DPD). We show that in model reduction methodologies for polymers it is not enough to preserve system properties (i.e., density ρ, pressure p, temperature T, radial distribution function g(r)) but preserving also the characteristic shape and length scale of the polymer chain model is necessary. In this work we apply a DPD-model-reduction methodology for linear polymers recently proposed; and demonstrate why the applicability of this methodology is limited upto certain maximum polymer length, and not suitable for solvent coarse graining
In this volume, a relatively new simulation method---Dissipative Particle Dynamics (DPD) is used to ...
This study develops reduced order models for the stochastic simulations of dilute polymeric solution...
The quantitative description of polymeric systems requires hierarchical modeling schemes, which brid...
We model high molecular weight homopolymers in semidilute concentration via Dissipative Particle Dyn...
AbstractWe model high molecular weight homopolymers in semidilute concentration via Dissipative Part...
We introduce a framework for model reduction of polymer chain models for dissipative particle dynami...
A new technique, dissipative particle dynamics (DPD), appears promising as a means of studying the d...
We performed a series of simulations for a linear polymer chain in a solvent using dissipative parti...
Understanding the fundamental properties of polymeric liquids remains a challenge in materials scien...
The authors analyzed extensively the dynamics of polymer chains in solutions simulated with dissipat...
We present here a systematic study of dynamic behavior for polymer (PE) melt by means of Dissipativ...
This review article is addressed to a broad community of polymer scientists. We outline and analyse ...
In an earlier work (Litvinov et al., Phys.Rev.E 77, 066703 (2008)), a model for a polymer molecule i...
Using many-body dissipative particle dynamics (MDPD), polymer solutions with concentrations spanning...
We present a coarse-grained model for linear polymers with a tunable number of effective atoms (blob...
In this volume, a relatively new simulation method---Dissipative Particle Dynamics (DPD) is used to ...
This study develops reduced order models for the stochastic simulations of dilute polymeric solution...
The quantitative description of polymeric systems requires hierarchical modeling schemes, which brid...
We model high molecular weight homopolymers in semidilute concentration via Dissipative Particle Dyn...
AbstractWe model high molecular weight homopolymers in semidilute concentration via Dissipative Part...
We introduce a framework for model reduction of polymer chain models for dissipative particle dynami...
A new technique, dissipative particle dynamics (DPD), appears promising as a means of studying the d...
We performed a series of simulations for a linear polymer chain in a solvent using dissipative parti...
Understanding the fundamental properties of polymeric liquids remains a challenge in materials scien...
The authors analyzed extensively the dynamics of polymer chains in solutions simulated with dissipat...
We present here a systematic study of dynamic behavior for polymer (PE) melt by means of Dissipativ...
This review article is addressed to a broad community of polymer scientists. We outline and analyse ...
In an earlier work (Litvinov et al., Phys.Rev.E 77, 066703 (2008)), a model for a polymer molecule i...
Using many-body dissipative particle dynamics (MDPD), polymer solutions with concentrations spanning...
We present a coarse-grained model for linear polymers with a tunable number of effective atoms (blob...
In this volume, a relatively new simulation method---Dissipative Particle Dynamics (DPD) is used to ...
This study develops reduced order models for the stochastic simulations of dilute polymeric solution...
The quantitative description of polymeric systems requires hierarchical modeling schemes, which brid...