Developing Polymer Composite Materials: Carbon Nanotubes or Graphene?

Создание полимерных композитных материалов: углеродные нанотрубки или графен?
Huisheng Peng, Xuemei Sun, Hao Sun, Houpu Li
2013-07-01

carbon nanotube polymer compositescomposite preparation and structuregraphene polymer compositesmechanical electrical thermal propertiespolymer–nanocarbon interaction
The formation of composite materials represents an efficient route to improve the performances of polymers and expand their application scopes. Due to the unique structure and remarkable mechanical, electrical, thermal, optical and catalytic properties, carbon nanotube and graphene have been mostly studied as a second phase to produce high performance polymer composites. Although carbon nanotube and graphene share some advantages in both structure and property, they are also different in many aspects including synthesis of composite material, control in composite structure and interaction with polymer molecule. The resulting composite materials are distinguished in property to meet different applications. This review article mainly describes the preparation, structure, property and application of the two families of composite materials with an emphasis on the difference between them. Some general and effective strategies are summarized for the development of polymer composite materials based on carbon nanotube and graphene.
1
CNTs and graphene share structural and property advantages but differ in synthesis, composite structure control, and polymer interaction.
2
Composite materials with carbon nanotubes (CNTs) or graphene effectively improve polymer performance and expand application scope.
3
Differences in CNT- and graphene-based composites lead to distinct properties suited for different applications.
4
The review summarizes preparation methods, structures, properties, applications, and general strategies for developing CNT- and graphene-based polymer composites.

Polymer composite materials reinforced with carbon nanotubes or graphene

Comparison of preparation, composite structure control, polymer–filler interactions, resulting properties and applications of CNT- versus graphene-reinforced polymer composites, and strategies for their development

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2013-07-01
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Huisheng Peng
Xuemei Sun
Hao Sun
Houpu Li
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