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Graphene-based polymer composites

Kuilla, T., et al., Recent advances in graphene based polymer composites. Progress in Polymer Science, 2010. 35(11) p. 1350-1375. [Pg.162]

Methods of fabrication of graphene-based polymer composites... [Pg.142]

The three most common methods of fabricating graphene-based polymer composites are described below. [Pg.142]

Das, T.K., Prusty, S. Graphene-based polymer composites and their applications. Polym.-Plast. Technol. Eng. 52, 319-331 (2013)... [Pg.163]

Du J, Zhao L, Zeng Y, Zhang L, Li F, Liu P, Liu C (2011) Comparison of electrical properties between multi-walled carbon nanotube and graphene nanosheet/high density polyethylene composites with a segregated network stmcture. Carbon 49 1094 Kuilla T, Bhadra S, Yao D, Kim NH, Bose S, Lee JH (2010) Recent advances in graphene based polymer composites. Prog Polym Sci 35 1350... [Pg.35]

Based on the kind of interaction between graphene sheets and polymers, the graphene-polymer composite can be mainly classified into two types graphene-filled polymer composites and polymer-functionalized graphene. [Pg.293]

Table 7.1 Mechanical properties of graphene/graphite-based polymer composites for various polymer matrices, filler types, and concentration and preparation methods... Table 7.1 Mechanical properties of graphene/graphite-based polymer composites for various polymer matrices, filler types, and concentration and preparation methods...
Exceptional mechanical properties along with remarkable electronic transport properties and thermal conductivity have made graphene the best carbon filler. Significant enhancement in mechanical properties of graphene-based polymer nanocomposites has been found (even with lower concentration) compared to those of the neat polymer and conventional graphite-based composites. Moreover, graphene/polymer nanocomposites exhibit several-fold increase in electrical conductivity and thermal conductivity. The conductive networks formed by graphene sheets result in considerable increase of the electrical conductivity and thermal conductivity of nanocomposites. As can be observed in Tables 7.1 and 7.2, property enhancements vary... [Pg.148]

Saravanan, N., Rajasekar, R., Mahalakshmi, S., Sathishkumar, T.P., Sasikumar, K.S.K., Sahoo, S., 2014. Graphene and modified graphene-based polymer nanocomposites — A review. Journal of Reinforced Plastics and Composites 33, 1158—1180. [Pg.153]

The three-dimensional continuous nanostructured framework has a large specific surface area and favors rapid electron and ion transport in polymer-based electronics. The previously mentioned polymer composites with three kinds of structures can form three-dimensional porous structures when they were stacked. Besides, polymers can be incorporated into porous silica, carbon, and graphene as the retaining frameworks to form three-dimensional structured composites. The resultant composite materials exhibit surface properties of the polymers and high mechanical strength and high electric conductivity of the frameworks, which will provide new possibilities for advanced applications. The structures, such as the cormectivity, pore diameters, and shapes, are mainly decided by the frameworks. [Pg.126]


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Base composition

Composite graphene

Composites based

Composites, polymer-based

Graphene

Graphene-polymer

Graphenes

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