Search Results - "Vilgis, T A"

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  1. 1

    Time scales in the reinforcement of elastomers by Vilgis, T.A.

    Published in Polymer (Guilford) (26-05-2005)
    “…Reinforcement of nano composite materials requires the consideration of various length and time scales. In this paper it is shown, how dynamical properties of…”
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  2. 2

    Structure and dynamics of a polymer melt at an attractive surface by De Virgiliis, A., Milchev, A., Rostiashvili, V. G., Vilgis, T. A.

    “…We study the structural and dynamic properties of a polymer melt in the vicinity of an adhesive solid substrate by means of Molecular Dynamics simulation at…”
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  3. 3

    Driven polymer translocation through a nanopore: A manifestation of anomalous diffusion by Dubbeldam, J. L. A, Milchev, A, Rostiashvili, V. G, Vilgis, T. A

    Published in Europhysics letters (01-07-2007)
    “…We study the translocation dynamics of a polymer chain threaded through a nanopore by an external force. By means of diverse methods (scaling arguments,…”
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  4. 4

    Adsorption of Multiblock and Random Copolymer on a Solid Surface: Critical Behavior and Phase Diagram by Bhattacharya, S, Hsu, H.-P, Milchev, A, Rostiashvili, V. G, Vilgis, T. A

    Published in Macromolecules (22-04-2008)
    “…The adsorption of a single multiblock AB copolymer on a solid planar substrate is investigated by means of computer simulations and scaling analysis. It is…”
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  5. 5

    Pulling an adsorbed polymer chain off a solid surface by Bhattacharya, S., Milchev, A., Rostiashvili, V. G., Vilgis, T. A.

    “…The thermally assisted detachment of a self-avoiding polymer chain from an adhesive surface by an external force applied to one of the chain-ends is…”
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  6. 6

    Physical Aspects of Meat Cooking: Time Dependent Thermal Protein Denaturation and Water Loss by Zielbauer, B. I., Franz, J., Viezens, B., Vilgis, T. A.

    Published in Food biophysics (01-03-2016)
    “…Selective denaturation of meat proteins - essential to reach desired textures - requires cooking temperatures corresponding to their different structure and…”
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  7. 7

    Self-consistent variational theory for globules by Dua, A, Vilgis, T. A

    Published in Europhysics letters (01-07-2005)
    “…A self-consistent variational theory for globules based on the uniform expansion method is presented. This method, first introduced by Edwards and Singh to…”
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  8. 8

    A statistical mechanical approach to the Payne effect in filled rubbers by Heinrich, G., Vilgis, T. A.

    Published in Express polymer letters (01-03-2015)
    “…In this paper we apply and discuss some new aspects to the steric interaction of filler particles in reinforced elastomers under dynamic mechanical loading…”
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  9. 9
  10. 10

    Forced translocation of a polymer: Dynamical scaling versus molecular dynamics simulation by Dubbeldam, J L A, Rostiashvili, V G, Milchev, A, Vilgis, T A

    “…We suggest a theoretical description of the force-induced translocation dynamics of a polymer chain through a nanopore. Our consideration is based on the…”
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  11. 11

    Rod-coil multiblock copolymers: Structure and stability by Nowak, C, Vilgis, T. A

    Published in Europhysics letters (01-10-2004)
    “…The behavior of multiblock polymers with alternating stiff and flexible blocks is discussed. The copolymers are immersed in selective solvent such that the…”
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  12. 12

    Copolymer adsorption kinetics at a selective liquid-liquid interface: Scaling theory and computer experiment by Corsi, A, Milchev, A, Rostiashvili, V. G, Vilgis, T. A

    Published in Europhysics letters (01-01-2006)
    “…We consider the adsorption kinetics of a regular block copolymer of total length N and block size M at a selective liquid-liquid interface in the limit of…”
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  13. 13

    Fractional Brownian motion approach to polymer translocation: the governing equation of motion by Dubbeldam, J L A, Rostiashvili, V G, Milchev, A, Vilgis, T A

    “…We suggest a governing equation that describes the process of polymer-chain translocation through a narrow pore and reconciles the seemingly contradictory…”
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  14. 14

    Polymer translocation through a nanopore: a showcase of anomalous diffusion by Dubbeldam, J L A, Milchev, A, Rostiashvili, V G, Vilgis, T A

    “…The translocation dynamics of a polymer chain through a nanopore in the absence of an external driving force is analyzed by means of scaling arguments,…”
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  15. 15

    Entropically driven transition to a liquid-crystalline polymer globule by Nowak, C, Rostiashvili, V. G, Vilgis, T. A

    Published in Europhysics letters (01-04-2006)
    “…A self-consistent field theory (SCFT) in the grand-canonical ensemble formulation is used to study transitions in a helix-coil multiblock copolymer globule…”
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  17. 17

    Kinetics of Copolymer Localization at a Selective Liquid−Liquid Interface by Corsi, A., Milchev, A., Rostiashvili, V. G., Vilgis, T. A.

    Published in Macromolecules (07-02-2006)
    “…The localization kinetics of a regular block copolymer of total length N and block size M at a selective liquid−liquid interface is studied in the limit of…”
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  18. 18

    Dynamics of a polymer in a quenched random medium: A Monte Carlo investigation by Milchev, A, Rostiashvili, V. G, Vilgis, T. A

    Published in Europhysics letters (01-11-2004)
    “…We use an off-lattice bead-spring model of a self-avoiding polymer chain immersed in a 3-dimensional quenched random medium to study chain dynamics by means of…”
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  19. 19

    Polymer chain scission at constant tension —An example of force-induced collective behaviour by Paturej, J, Milchev, A, Rostiashvili, V. G, Vilgis, T. A

    Published in Europhysics letters (01-05-2011)
    “…The breakage of a polymer chain of segments, coupled by anharmonic bonds with applied constant external tensile force is studied by means of Molecular Dynamics…”
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  20. 20

    Polymer chain in a quenched random medium: slow dynamics and ergodicity breaking by MIGLIORINI, G, ROSTIASHVILI, V. G, VILGIS, T. A

    “…The Langevin dynamics of a self-interacting chain embedded in a quenched random medium is investigated by making use of the generating functional method and…”
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