Graphene Polyimide Nanocomposites; Thermal, Mechanical, and High-Temperature Shape Memory Effects

Flexible graphene polyimide nanocomposites (0.1–4 wt %) with superior mechanical properties over those of neat polyimide resin have been prepared by solution blending. Imide moieties were grafted to amine-functionalized graphene using a step-by-step condensation and thermal imidization method. The i...

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Veröffentlicht in:ACS nano 2012-09, Vol.6 (9), p.7644-7655
Hauptverfasser: Yoonessi, Mitra, Shi, Ying, Scheiman, Daniel A, Lebron-Colon, Marisabel, Tigelaar, Dean M, Weiss, R. A, Meador, Michael A
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Sprache:eng
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Zusammenfassung:Flexible graphene polyimide nanocomposites (0.1–4 wt %) with superior mechanical properties over those of neat polyimide resin have been prepared by solution blending. Imide moieties were grafted to amine-functionalized graphene using a step-by-step condensation and thermal imidization method. The imide-functionalized graphene exhibited excellent compatibility with N-methyl-2-pyrrolidone. The dynamic storage moduli of the graphene polyimide nanocomposites increased linearly with increasing graphene content for both unmodified graphene and imidized graphene. Moduli of the imidized graphene nanocomposites were 25–30% higher than those of unmodified graphene nanocomposites. Both neat polyimide and polyimide nanocomposites exhibited shape memory effects with a triggering temperature of 230 °C. where addition of graphene improved the recovery rate. Addition of graphene improved thermal stability of the polyimide nanocomposites for both graphene and modified graphene.
ISSN:1936-0851
1936-086X
DOI:10.1021/nn302871y