Preparation of clay/epoxy nanocomposites by layered-double-hydroxide initiated self-polymerization

An anionic clay, magnesium–aluminum layered double hydroxide (Mg2Al–NO3–LDH), was prepared by a co-precipitation method and intercalated with poly(oxypropylene)–amindocarboxylic acid (POP–amido acid). Depending on the POP-intercalating agents with molecular weight at 2000 or 400g/mol, the intercalat...

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Veröffentlicht in:Polymer (Guilford) 2008-10, Vol.49 (22), p.4796-4801
Hauptverfasser: Chan, Ying-Nan, Juang, Tzong-Yuan, Liao, Yi-Lin, Dai, Shenghong A., Lin, Jiang-Jen
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Sprache:eng
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Zusammenfassung:An anionic clay, magnesium–aluminum layered double hydroxide (Mg2Al–NO3–LDH), was prepared by a co-precipitation method and intercalated with poly(oxypropylene)–amindocarboxylic acid (POP–amido acid). Depending on the POP-intercalating agents with molecular weight at 2000 or 400g/mol, the intercalated LDHs were analyzed to have d spacing of 6.8 or 2.7nm and organic incorporation of 80 and 55wt%, respectively. Two comparative POP/LDH hybrids were allowed to initiate the self-polymerization of the epoxy resin, diglycidyl ether of bisphenol-A (DGEBA). The curing rate was significantly increased by using the hybrids as initiators for epoxy curing, demonstrated by DSC thermal analysis that the exothermic peak shifted from 182 to 152°C by increasing organoclay addition. The resultant nanocomposites prepared from the anionic LDH initiated epoxy self-polymerization have the improved thermal and physical properties, evidenced by TGA, XRD, TEM, and SEM analyses. [Display omitted]
ISSN:0032-3861
1873-2291
DOI:10.1016/j.polymer.2008.08.062