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Título
Viscoelastic property enhancement of polymethylmethacrylate molecularly confined within 3D nanostructures
Autor
Año del Documento
2024
Editorial
Elsevier
Descripción
Producción Científica
Documento Fuente
European Polymer Journal, 2024, vol. 214, 113181
Resumen
Owing to its applications in various fields, such as biomedical, microelectronics, sensors, and polymer composites, polymer nanoconfinement is a widely studied topic. This confinement changes the configuration of molecules compared with those of solids, which, in the case of polymeric films, decreases the glass transition temperature and mechanical properties of the polymer. In this study, nanostructured polymethylmethacrylate, presenting three-dimensional nanoscale confinement were evaluated using amplitude modulation–frequency modulation atomic force microscopy for the first time. The Young’s moduli and loss tangents were measured, and the results suggest that for cells smaller than approximately 39 nm, the Young’s modulus of the 3-D confined polymer enhances that of the raw solid owing to reduced molecular mobility. This research shows that the molecular mobility was reduced because polymer chains were confined within three-dimensional space.
Palabras Clave
Three-dimensional polymer confinement
Amplitude modulation–frequency modulation atomic force microscopy
Nanocellular polymer
Mechanical property
Loss tangent
Confined polymethylmethacrylate
ISSN
0014-3057
Revisión por pares
SI
Patrocinador
Ministerio de Ciencia e Innovación (RTI2018-098749-B-I00 and PID2021-127108OB-I00, TED2021-130965B-I00 and PDC2022-133391-I00)
Junta de Castilla y León (VA202P20)
Junta de Castilla y León (VA202P20)
Version del Editor
Propietario de los Derechos
© 2024 The Author(s)
Idioma
eng
Tipo de versión
info:eu-repo/semantics/publishedVersion
Derechos
openAccess
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6.805Mb
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Adobe PDF
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