Molina Mateo, J.; Meseguer Dueñas, JM.; Gómez Ribelles, JL. (2006). A Definition of Dynamically Accessible Volume for Thermal Systems. Macromolecular Theory and Simulations. 15:32-39. https://doi.org/10.1002/mats.200500054
Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/180935
Title:
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A Definition of Dynamically Accessible Volume for Thermal Systems
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Author:
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Molina Mateo, José
Meseguer Dueñas, José María
Gómez Ribelles, José Luís
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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 glass transition and physical aging processes of a polymeric material have been simulated using the bond fluctuation model. Two potentials that represent intra- and inter-molecular interactions have been employed. ...[+]
[EN] The glass transition and physical aging processes of a polymeric material have been simulated using the bond fluctuation model. Two potentials that represent intra- and inter-molecular interactions have been employed. Simulations of different thermal histories that include cooling from equilibrium have been performed. The evolution of the system and the structure attained at low temperature are analyzed as a function of the assumed weight of inter- and intra-molecular potentials in the total energy of the system. A new way of characterizing the free volume of the system and its evolution with the temperature or time is proposed. It is based on the concept of dynamically accessible volume but modified in the sense of considering the probability of an empty site to be accessed according to a Metropolis criterion. The results obtained show that the thermal redefinition of the dynamically accessible volume, TDAV, offers a better representation of the real mobility of the polymeric systems. The use of information on the structure of the system coming from the pair-correlation function and the molecular mobility in the glassy state characterized by the time evolution of TDAV allows to reach the conclusion that a combination of inter- and intra-molecular potentials produces the vitrification of the polymer system on cooling.
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Subjects:
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Bond fluctuation model
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Dynamically accessible volume
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Glass transition
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Lattice models
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Monte Carlo simulation
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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.200500054
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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.200500054
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Project ID:
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info:eu-repo/grantAgreement/MINISTERIO DE CIENCIA Y TECNOLOGIA//MAT2003-05391-C03-01//RELACION ENTRE ESTRUCTURA Y PROPIEDADES DE MALLAS POROSAS SINTETICAS PARA CULTIVO CELULAR /
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Thanks:
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This work was supported by the Spanish Science and Technology Ministry through the MAT2003-05391-C03-01 project. The authors acknowledge the support of the Generalitat Valenciana to the Center for Biomaterials of the ...[+]
This work was supported by the Spanish Science and Technology Ministry through the MAT2003-05391-C03-01 project. The authors acknowledge the support of the Generalitat Valenciana to the Center for Biomaterials of the Polytechnical University of Valencia through the project GRUPOS03/018
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Type:
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Artículo
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