We propose a self-consistent molecular theory of conformational properties of flexible polymers in melts and solutions. The method employs the polymer reference interaction site model for the intermolecular correlations and the Green function technique for the intramolecular correlations. We demonstrate this method on n-alkane molecules in different environments: water, hexane, and in melt, corresponding to poor, good, and condition, respectively. The numerical results of the intramolecular correlation function, the radius of gyration, and the characteristic ratio of a polymer chain are indicative of conformational changes from one environment to another and are in agreement with other findings in the literature. Scaling laws for the chain ...
We propose an efficient method for investigating conformational properties of a polymer in solvent. ...
A self-consistent Green-function description of concentrated polymer solutions and dense polymeric m...
A self-consistent Green-function description of concentrated polymer solutions and dense polymeric m...
4 pages, 3 figuresInternational audienceIt is commonly accepted that in concentrated solutions or me...
We present results from constant pressure molecular-dynamics simulations for a bead-spring model of ...
We study the behavior of a flexible polymer chain in the presence of a low-molecular weight solvent ...
We propose a self-consistent molecular theory of conformational properties of flexible polymers in s...
We present a density functional approach to quantitatively evaluate the microscopic conformations of...
We present a density functional approach to quantitatively evaluate the microscopic conformations of...
In the melt polymer conformations are nearly ideal according to Flory's ideality hypothesis. Silberb...
We study the conformation of randomly branched, monodispersed polymers both in dilute and concentrat...
We study the conformation of randomly branched, monodispersed polymers both in dilute and concentrat...
A mode-coupling theory for dense polymeric systems is developed which unifyingly incorporates the se...
For the flexible polymer molecule the concepts of two concentrations, namely, segmental and molecula...
A self-consistent Green-function description of concentrated polymer solutions and dense polymeric m...
We propose an efficient method for investigating conformational properties of a polymer in solvent. ...
A self-consistent Green-function description of concentrated polymer solutions and dense polymeric m...
A self-consistent Green-function description of concentrated polymer solutions and dense polymeric m...
4 pages, 3 figuresInternational audienceIt is commonly accepted that in concentrated solutions or me...
We present results from constant pressure molecular-dynamics simulations for a bead-spring model of ...
We study the behavior of a flexible polymer chain in the presence of a low-molecular weight solvent ...
We propose a self-consistent molecular theory of conformational properties of flexible polymers in s...
We present a density functional approach to quantitatively evaluate the microscopic conformations of...
We present a density functional approach to quantitatively evaluate the microscopic conformations of...
In the melt polymer conformations are nearly ideal according to Flory's ideality hypothesis. Silberb...
We study the conformation of randomly branched, monodispersed polymers both in dilute and concentrat...
We study the conformation of randomly branched, monodispersed polymers both in dilute and concentrat...
A mode-coupling theory for dense polymeric systems is developed which unifyingly incorporates the se...
For the flexible polymer molecule the concepts of two concentrations, namely, segmental and molecula...
A self-consistent Green-function description of concentrated polymer solutions and dense polymeric m...
We propose an efficient method for investigating conformational properties of a polymer in solvent. ...
A self-consistent Green-function description of concentrated polymer solutions and dense polymeric m...
A self-consistent Green-function description of concentrated polymer solutions and dense polymeric m...