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    Por favor, use este identificador para citar o enlazar este ítem:http://uvadoc.uva.es/handle/10324/40721

    Título
    Molecular confinement of solid and gaseous phases of self-standing bulk nanoporous polymers inducing enhanced and unexpected physical properties
    Autor
    Pinto Sanz, JavierAutoridad UVA Orcid
    Notario Collado, BelénAutoridad UVA
    Verdejo, Raquel
    Dumon, Michel
    Costeux, Stephane
    Rodríguez Pérez, Miguel ÁngelAutoridad UVA Orcid
    Año del Documento
    2017
    Documento Fuente
    Polymer Volume 113, 24 March 2017, Pages 27-33
    Résumé
    In this work it is provided the first evidence of the polymer chains confinement within self-standing pore walls of nanoporous materials based on poly (methyl methacrylate) (PMMA). This was made possible by producing a series of porous samples with a wide range of pore sizes between 90 nm and 3 μm using processes combining CO2 sorption, selective block copolymer swelling or homogeneous physical foaming. Mobility restrictions of the PMMA chains in the porous samples with pore size below 200 nm was consistently demonstrated with several experimental techniques, including differential scanning calorimetry, Raman spectroscopy, and broadband dielectric spectroscopy. In addition, several scale-reduction phenomena related to the constitutive elements of the porous materials, both in the polymeric and gaseous phases, and to the porous architecture are identified. The significance of these phenomena on macroscopic electrical conductivity and permittivity of the nanoporous materials is demonstrated, and the presented observations support previous explanations of improved mechanical properties and thermal insulation of this type of nano-materials.
    ISSN
    0032-3861
    Revisión por pares
    SI
    DOI
    10.1016/j.polymer.2017.02.046
    Idioma
    spa
    URI
    http://uvadoc.uva.es/handle/10324/40721
    Tipo de versión
    info:eu-repo/semantics/draft
    Derechos
    openAccess
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    • DEP32 - Artículos de revista [284]
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    polymer 2017.pdf
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