Atomistic simulation of interfacial behaviour in graphene-polymer nanocomposites


Autoria(s): Wang, Mingchao; Yan, Cheng
Data(s)

01/01/2014

Resumo

Graphene–polymer nanocomposites have promising properties as new structural and functional materials. The remarkable mechanical property enhancement in these nanocomposites is generally attributed to exceptional mechanical property of graphene and possible load transfer between graphene and polymer matrix. However, the underlying strengthening and toughening mechanisms have not been well understood. In this work, the interfacial behavior of graphene-polyethylene (PE) was investigated using molecular dynamics (MD) method. The interfacial shear force (ISF) and interfacial shear stress (ISS) between graphene and PE matrix were evaluated, taking into account graphene size, the number of graphene layers and the structural defects in graphene. MD results show that the ISS at graphene-PE interface mainly distributes at each end of the graphene nanofiller within the range of 1 nm, and much larger than that at carbon nanotube (CNT)-PE interface. Moreover, it was found that the ISS at graphene-PE interface is sensitive to the layer number.

Identificador

http://eprints.qut.edu.au/66149/

Publicador

American Scientific Publishers

Relação

DOI:10.1166/sam.2014.1810

Wang, Mingchao & Yan, Cheng (2014) Atomistic simulation of interfacial behaviour in graphene-polymer nanocomposites. Science of Advanced Materials, 6, pp. 1-5.

Direitos

Copyright 2014 American Scientific Publishers

Fonte

School of Chemistry, Physics & Mechanical Engineering; Science & Engineering Faculty

Palavras-Chave #091202 Composite and Hybrid Materials #091307 Numerical Modelling and Mechanical Characterisation #Graphene-polymer nanocomposite #Interfacial shear stress #Molecular dynamics simulation
Tipo

Journal Article