In this paper we present a comprehensive lattice Monte Carlo study of long chain conformations at solid-polymer melt interfaces. Segmental scale interfacial features, like the bond orientational distribution were found to be independent of surface-segment energetics, and statistically identical with Helfand’s predictions for the full-occupancy, infinite chain length limit. Conformational statistics of chains longer than 5-6 statistical segments followed the predictions of the Scheutjens-Fleer theory and the same power laws as a single ideal chain at the critical value of the surface-segment adsorption free-energy. Our simulations tested the predictions of random walk next to a “reflective” surface statistics for the spatial variations of ch...
The behavior of a solution of equilibrium polymers (or living polymers) at an interface is studied, ...
We propose a physical picture describing the mechanisms by which chain ends affect the surface tensi...
©1987 American Institute of PhysicsThe electronic version of this article is the complete one and ca...
In this paper we present a comprehensive lattice Monte Carlo study of long chain conformations at so...
We investigate the dynamic and static properties of a polymer melt near solid surfaces. The melt, co...
The interfacial structure of physisorbed homopolymers is studied by means of Monte Carlo simulations...
We study the structural and dynamic properties of a polymer melt in the vicinity of an adhesive soli...
In the melt polymer conformations are nearly ideal according to Flory's ideality hypothesis. Silberb...
Silberberg has argued that the surface of a polymer melt behaves like a reflecting boundary on the r...
We propose a multiscale simulation strategy capable of investigating and predicting the interfacial ...
We investigate, by extensive molecular dynamics simulations as well as a simplified single-chain mod...
By Monte Carlo simulation of two lattice models of polymer melts, the enrichment of the chain ends i...
Monte Carlo (MC) lattice simulation studies have been performed for a compressible polymer melt over...
ABSTRACT: Molecular dynamics (MD) simulations have been performed on a dense polymer melt adsorbed o...
4 pages, 3 figuresInternational audienceIt is commonly accepted that in concentrated solutions or me...
The behavior of a solution of equilibrium polymers (or living polymers) at an interface is studied, ...
We propose a physical picture describing the mechanisms by which chain ends affect the surface tensi...
©1987 American Institute of PhysicsThe electronic version of this article is the complete one and ca...
In this paper we present a comprehensive lattice Monte Carlo study of long chain conformations at so...
We investigate the dynamic and static properties of a polymer melt near solid surfaces. The melt, co...
The interfacial structure of physisorbed homopolymers is studied by means of Monte Carlo simulations...
We study the structural and dynamic properties of a polymer melt in the vicinity of an adhesive soli...
In the melt polymer conformations are nearly ideal according to Flory's ideality hypothesis. Silberb...
Silberberg has argued that the surface of a polymer melt behaves like a reflecting boundary on the r...
We propose a multiscale simulation strategy capable of investigating and predicting the interfacial ...
We investigate, by extensive molecular dynamics simulations as well as a simplified single-chain mod...
By Monte Carlo simulation of two lattice models of polymer melts, the enrichment of the chain ends i...
Monte Carlo (MC) lattice simulation studies have been performed for a compressible polymer melt over...
ABSTRACT: Molecular dynamics (MD) simulations have been performed on a dense polymer melt adsorbed o...
4 pages, 3 figuresInternational audienceIt is commonly accepted that in concentrated solutions or me...
The behavior of a solution of equilibrium polymers (or living polymers) at an interface is studied, ...
We propose a physical picture describing the mechanisms by which chain ends affect the surface tensi...
©1987 American Institute of PhysicsThe electronic version of this article is the complete one and ca...