Feipeng DuHao TangDeyong Huang
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.
M. J. AssaelKonstantinos D. AntoniadisIfigeneia MetaxaDimitrios Tzetzis
Da Jiang YangQing ZhangGeorge Z. ChenSoon Fatt YoonJ. AhnShaogang WangQi ZhouQuan WangJ. Q. Li
Uraiwan PongsaAnongnat Somwangthanaroj
Majid Kabiri SamaniN. KhosravianG.C.K. ChenMaziar ShakerzadehD. BaillargeatBeng Kang Tay
Luciana De Simone CividanesDeborah Dibbern BrunelliE.F. AntunesE.J. CoratKumiko Koibuchi SakaneGilmar Patrocínio Thim