Thermal conductivity of epoxy resin reinforced with magnesium oxide coated multiwalled carbon nanotubes

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Abstract

Magnesium oxide coated multiwalled carbon nanotubes (MgO@MWNT) were fabricated and dispersed into epoxy matrix. The microstructures of MgO@MWNT and epoxy/MgO@MWNT nanocomposites were characterized by TEM and SEM. Electrical resistivity and thermal conductivity of epoxy nanocomposites were investigated with high resistance meter and thermal conductivity meter, respectively. MgO@MWNT has core-shell structure with MgO as shell and nanotube as core, and the thickness of MgO shell is ca. 15 nm. MgO@MWNT has been dispersed well in the epoxy matrix. MgO@MWNT loaded epoxy nanocomposites still retain electrical insulation inspite of the filler content increase. However, thermal conductivity of epoxy was increased with the MgO@MWNT content increasing. When MgO@MWNT content reached 2.0 wt.%, thermal conductivity was increased by 89% compared to neat epoxy, higher than that of unmodified MWNT nanocomposites with the same loading content. © 2013 Fei-Peng Du et al.

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Du, F. P., Tang, H., & Huang, D. Y. (2013). Thermal conductivity of epoxy resin reinforced with magnesium oxide coated multiwalled carbon nanotubes. International Journal of Polymer Science, 2013. https://doi.org/10.1155/2013/541823

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