Torregrosa Cabanilles, C.; Meseguer Dueñas, JM.; Gómez Ribelles, JL.; Molina Mateo, J. (2009). Cooperativity in the Conformational Rearrangements of Polymer Chain Segments as Seen by Bond Fluctuation Model. Macromolecular Theory and Simulations. 18(6):355-362. https://doi.org/10.1002/mats.200900008
Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/180936
Title:
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Cooperativity in the Conformational Rearrangements of Polymer Chain Segments as Seen by Bond Fluctuation Model
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Author:
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Torregrosa Cabanilles, Constantino
Meseguer Dueñas, José María
Gómez Ribelles, José Luís
Molina Mateo, José
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UPV Unit:
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Universitat Politècnica de València. Departamento de Física Aplicada - Departament de Física Aplicada
Universitat Politècnica de València. Departamento de Termodinámica Aplicada - Departament de Termodinàmica Aplicada
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Issued date:
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Abstract:
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[EN] The kinetics of structural relaxation was simulated using the bond fluctuation model. Annealing of the system in the glassy state produces a clearly nonexponential decrease in the energy in a certain temperature ...[+]
[EN] The kinetics of structural relaxation was simulated using the bond fluctuation model. Annealing of the system in the glassy state produces a clearly nonexponential decrease in the energy in a certain temperature interval. At lower temperatures, the decrease in energy takes place by successive small steps, due to the change of the energy of individual polymer chains that modify their conformation into small neighbourhoods. This cooperativity is behind the nonexponential behaviour shown by structural relaxation at higher temperatures. A second order Markov chain is able to reproduce the nonexponentiality with quite good agreement with the bond fluctuation simulated curves. Cooperativity comes from the fact that the transition probability of a polymer chain between two energy levels depends on the history of previous transitions that took place in its neighbourhood.
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Subjects:
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Glass transition
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Lattice models
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Markov chain
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Monte Carlo simulation
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Relaxation
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Copyrigths:
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Cerrado |
Source:
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Macromolecular Theory and Simulations. (issn:
1022-1344
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DOI:
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10.1002/mats.200900008
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Publisher:
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John Wiley & Sons
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Publisher version:
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https://doi.org/10.1002/mats.200900008
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Thanks:
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The authors would like to acknowledge the support provided by the Vicerectorado de Investigacion, Desarrollo e Innovacion of the Universidad Politecnica de Valencia through the PAID07-20080021 project
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Type:
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Artículo
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