Incorporation of liquid-like multiwalled carbon nanotubes into an epoxy matrix by solvent-free processing

Nanotechnology
Ying-Kui YangYiu-Wing Mai

Abstract

Covalent attachment of 2,2'-(ethylenedioxy)-diethylamine to multiwalled carbon nanotubes (MWCNTs) produced amino-functionalized MWCNTs which behaved like liquids at ambient temperature. These liquid-like MWCNTs (l-MWCNTs) could be homogeneously dispersed and chemically embedded in an epoxy matrix by solvent-free processing. In contrast, solid MWCNTs (s-MWCNTs) functionalized by 1,8-diaminooctane were poorly dispersed in epoxy although they possess chemical structures and functionalization comparable to l-MWCNTs. An epoxy composite filled with pristine MWCNTs (p-MWCNTs) was also fabricated in the absence of a solvent at the same loading for comparison. The molecular level coupling of l-MWCNTs and epoxy provided significant improvements in overall mechanical properties relative to those composites containing p-MWCNTs and s-MWCNTs. The Young's modulus, storage modulus, tensile strength, failure strain and toughness of neat epoxy were increased by 28.4, 23.8, 22.9, 24.1 and 66.1%, respectively, by adding 0.5 wt% of l-MWCNTs. Thus, functionalized carbon nanotubes in liquid form contributed to better dispersion and superior interfacial bonding with the epoxy matrix, thereby facilitating greater mechanical reinforcement efficiency.

References

Aug 6, 2002·Science·Ray H BaughmanWalt A de Heer
Jan 11, 2005·Nature Materials·Jonghwan SuhrPulickel Ajayan
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Jun 19, 2009·Journal of the American Chemical Society·Qi LiChuanxi Xiong
May 25, 2010·Advanced Materials·Michele T Byrne, Yurii K Gun'ko

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