Thermal analysis of polymer layered silicate nanocomposites. Identification of nanostructure development by DSC

dc.contributor
Universitat Politècnica de Catalunya. Departament d'Enginyeria Química
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Universitat Politècnica de Catalunya. Departament de Màquines i Motors Tèrmics
dc.contributor
Universitat Politècnica de Catalunya. TERFIQ - Grup de Termodinàmica i Fisico-Química
dc.contributor.author
Shiravand, Fatemeh
dc.contributor.author
Fraga Rivas, Iria
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Cortés Izquierdo, María Pilar
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Calventus Solé, Yolanda
dc.contributor.author
Hutchinson, John M.
dc.date.issued
2014-11-01
dc.identifier
Shiravand, F. [et al.]. Thermal analysis of polymer layered silicate nanocomposites. Identification of nanostructure development by DSC. "Journal of thermal analysis and calorimetry", 01 Novembre 2014, vol. 118, núm. 2, p. 723-729.
dc.identifier
1388-6150
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https://hdl.handle.net/2117/25026
dc.identifier
10.1007/s10973-014-3709-3
dc.description.abstract
It has been shown, for three different polymer layered silicate (PLS) nanocomposite systems, how differential scanning calorimetry (DSC) can identify the different reactions of homopolymerisation and of crosslinking that occur in the intra- and extra-gallery regions of these nanocomposites, respectively, and hence how DSC can be used to assess the cure conditions for optimising their nanostructure. The PLS nanocomposites are based upon: (i) diglycidyl ether of bisphenol-A (DGEBA) cured with a polyoxypropylene diamine; (ii) DGEBA cured with an -NH2 terminated hyperbranched polymer (HBP); and (iii) tri-glycidyl p-amino phenol (TGAP) cured with a diamine. In each case, the existence of both intra- and extra-gallery reactions in the DSC cure curves, and whether they occur simultaneously or sequentially, and in what order, are identified and correlated with the nanostructure as observed by small angle X-ray scattering and transmission electron microscopy. In particular, it is shown that the intra-gallery reaction must precede the extra-gallery for significant exfoliation to occur. In accordance with this scenario, the TGAP/diamine system displays the greatest degree of exfoliation, the DGEBA/diamine system the least, with the DGEBA/HBP system intermediate. For those systems in which significant exfoliation occurs, the DSC cure curves also allow the optimum cure conditions, such as the isothermal cure temperature, to be determined.
dc.description.abstract
Postprint (published version)
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7 p.
dc.format
application/pdf
dc.language
eng
dc.rights
Restricted access - publisher's policy
dc.subject
Àrees temàtiques de la UPC::Enginyeria química::Química física
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Àrees temàtiques de la UPC::Enginyeria dels materials::Materials compostos
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Calorimetry
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Epoxy resins
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Nanocomposites (Materials)--Research
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Silicates
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Differential scanning calorimetry (DSC)
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Epoxy resin
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Cure kinetics
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Nanocomposites
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Exfoliation
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Layered silicate
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EPOXY-CLAY NANOCOMPOSITES
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CURE TEMPERATURE
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MONTMORILLONITE
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EXFOLIATION
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RESIN
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STOICHIOMETRY
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MORPHOLOGY
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MECHANISM
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Calorimetria
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Resines epoxídiques
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Nanocompòsits (Materials)
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Silicats
dc.title
Thermal analysis of polymer layered silicate nanocomposites. Identification of nanostructure development by DSC
dc.type
Article


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