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Curing kinetics and morphology of a nanovesicular epoxy/stearyl-block-poly(ethylene oxide) surfactant system

Authors :
Bogaerts, K.
Lavrenova, A.
Spoelstra, A.B.
Boyard, N.
Goderis, B.
Bogaerts, K.
Lavrenova, A.
Spoelstra, A.B.
Boyard, N.
Goderis, B.
Source :
Soft Matter vol.11 (2015) date: 2015-08-21 nr.31 p.6212-6222 [ISSN 1744-683X]
Publication Year :
2015

Abstract

Brittle epoxy based thermosets can be made tougher by introducing structural inhomogeneities at the micro- or nanoscale. In that respect, nano vesicles and worm-like micelles from self-assembling blockcopolymers have been shown to be very effective. This paper describes the curing kinetics and morphology of an epoxy composed of diglycidyl ether of bisphenol A (DGEBA) and 4,4′-methylenedianiline (MDA), modified by 20% of the surfactant stearyl-block-poly(ethylene oxide). Time resolved, synchrotron small-angle X-ray scattering demonstrates that at any time during the epoxy curing process, the surfactant predominantly adopts a bilayer vesicular nano-morphology. Transmission electron microscopy on fully cured systems reveals the coexistence of spherical and worm-like micelles. Differential scanning calorimetry experiments prove that the presence of surfactant reduces the epoxy curing rate but that ultimately full curing is accomplished. The material glass transition temperature falls below that of the pure resin due to plasticization. It is suggested that favorable secondary interactions between the PEO segments and the epoxy resin are responsible for the observed phenomena.

Details

Database :
OAIster
Journal :
Soft Matter vol.11 (2015) date: 2015-08-21 nr.31 p.6212-6222 [ISSN 1744-683X]
Notes :
Bogaerts, K.
Publication Type :
Electronic Resource
Accession number :
edsoai.on1028716671
Document Type :
Electronic Resource