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首页> 外文期刊>Macromolecular Research >Self-Assembly of Carbon Nanotubes and Boron Nitride via Electrostatic Interaction for Epoxy Composites of High Thermal Conductivity and Electrical Resistivity
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Self-Assembly of Carbon Nanotubes and Boron Nitride via Electrostatic Interaction for Epoxy Composites of High Thermal Conductivity and Electrical Resistivity

机译:碳纳米管和氮化硼的自组装通过静电相互作用的高导热率和电阻率的环氧复合材料

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摘要

The self-assembled oxidized carbon nanotubes (oCNTs) with the silane functionalized hexagonal boron nitrides (oCNTs@fBN) via electrostatic interaction were used to improve the thermal conductivity while maintaining the electrical insulation properties of the epoxy composites. The oCNTs were separately immobilized on the edges of hexagonal boron nitride (hBN), which prevent oCNTs from continuously contacting with each other. The thermal conductivity and volume resistivity of oCNTs@fBN filler loaded epoxy composites were measured and compared with the epoxy composites with a filler of hBN, a mixed filler of oCNTs, and silane functionalized hBN (fBN). The thermal conductivity of the epoxy composites containing 20 wt% of oCNTs@fBN10 was 1.26 W center dot m(-1)center dot K-1, which is higher than 600% compared to that of neat epoxy and the volume resistivity of the epoxy composites was in an insulation region even at high content of oCNTs@fBN filler. The significant improvement in thermal conductivity was attributed to the formation of linkages between oCNTs and fBN and the good compatibility of oCNTs@fBN in the epoxy matrix.
机译:通过静电相互作用的自组装氧化碳纳米管(OCNTS)与硅烷官能化六边形氮化物(OCNTS @ FBN)用于提高导热率,同时保持环氧复合材料的电绝缘性能。将OCNT分别固定在六边形氮化硼(HBN)的边缘上,其防止OCNTs彼此连续接触。测定OCNTS @ FBN填充物的热导电性和体积电阻率,并与具有HBN的填料的环氧复合材料,OCNT的混合填料和硅烷官能化HBN(FBN)进行比较。含有20wt%OCN10的环氧复合材料的导热率为1.26W中心点M(-1)中心点K-1,与整齐的环氧树脂和环氧树脂的体积电阻率相比,高于600%即使在高含量的OCNT @ FBN填充物中,复合材料也在绝缘区域。导热率的显着改善归因于OCNTS和FBN之间的形成以及ECNTS @ FBN在环氧基质中的良好相容性。

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