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Decoupling Electrical and Thermal Conductivity of Polymer Composites

机译:聚合物复合材料的去耦电和导热系数

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Hybrid nanocrystals, fullerene-decorated graphene, were incorporated into the epoxy composites, and their electrical and thermal transport was investigated. The hybrid nanocrystals were fabricated through a solution process and the resultant hybrid nanostructure was verified by transmission electron microscopy and X-ray diffraction characterization. After incorporation of fullerene-functionalized graphene into epoxy resin, the electrical conductivity increased significantly while the thermal conductivity only increase slightly, resulting in effective decoupling thermal/electrical conductivity. Through filling fullerene/graphene nanohybrids into the epoxy resins, the electrical conductivity was increased from 10~(-14) to 2949 S/m, more than 17 orders of magnitude. On the other hand, the thermal conductivity was only increased from 0.3 to 0.66 W m~(-1)K~(-1), only two-fold increments. Further theoretical calculations and comparative experiments indicated that the synergistic effects of graphene and fullerene nanocrystals resulted in the effective decoupling of thermal/electrical transport. The electrical transport was improved through graphene sheets while the lattice thermal transport was impeded through fullerene decorated on the graphene sheets. The de-coupling of electrical and thermal conductivity of polymer composites opens numerous opportunities for new materials and systems.
机译:杂化纳米晶体,富勒烯装饰石墨烯掺入环氧树脂复合材料中,并研究了它们的电气和热传输。通过溶液方法制造杂化纳米晶体,通过透射电子显微镜和X射线衍射表征验证所得杂交纳米结构。在将富勒烯官能化石墨烯掺入环氧树脂后,电导率显着增加,而导热率仅略微增加,导致有效的去耦热/导电性。通过将富勒烯/石墨烯纳米露出填充到环氧树脂中,导电率从10〜( - 14)升至2949 s / m,超过17个幅度。另一方面,导热率仅从0.3升至0.66WM〜(-1)k〜(-1),仅为两倍的增量。进一步的理论计算和比较实验表明,石墨烯和富勒烯纳米晶体的协同作用导致热/电气传输的有效去耦。通过石墨烯片改善电气传输,而通过在石墨烯片上装饰的富勒烯阻抗晶格热传输。聚合物复合材料的电气和导热率的去耦合为新材料和系统开辟了许多机会。

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