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Enhanced Thermal Conductivity of Epoxy Composites Filled with 2D Transition Metal Carbides (MXenes) with Ultralow Loading

机译:填充超低载荷的2D过渡金属碳化物(MXenes)的环氧树脂复合材料的增强的导热性

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摘要

With the development of electronic devices such as integrated circuits toward the continual increase in power density and consumption, the efficient heat dissipation and low thermal expansion of materials become one of the most important issue. However, conventional polymers have the problem of poor thermal dissipation performance, which hinder application for electronic devices. In this work, the two-dimensional material, MXene (Ti3C2), is used as the reinforcement additive to optimize the thermal properties of polymers. We reported the preparation of multilayer Ti3C2 MXene by HF etching method and obtained few-layer Ti3C2 MXene by simple ultrasonication. Meanwhile, Ti3C2/epoxy composites were prepared by a solution blending method. The results show that the thermal properties of the composites are improved in comparison with the neat epoxy. Thermal conductivity value (0.587 W/mK) of epoxy composite with only 1.0 wt% Ti3C2 MXene fillers, is increased by 141.3% compared with that of neat epoxy. In addition, the composite presents an increased glass transition temperature, high thermal stability and lower coefficient of thermal expansion. This work is of great significance for the research of high-performance composite materials.
机译:随着诸如集成电路之类的电子设备向功率密度和功耗的不断增加的发展,材料的有效散热和低热膨胀成为最重要的问题之一。然而,常规聚合物具有散热性能差的问题,这阻碍了电子设备的应用。在这项工作中,二维材料MXene(Ti3C2)被用作增强添加剂,以优化聚合物的热性能。我们报道了通过HF蚀刻法制备多层Ti3C2 MXene,并通过简单的超声处理获得了几层的Ti3C2 MXene。同时,采用溶液共混法制备了Ti3C2 /环氧复合材料。结果表明,与纯环氧树脂相比,复合材料的热性能得到了改善。与纯环氧树脂相比,仅含1.0 wt%Ti3C2 MXene填料的环氧复合材料的导热系数(0.587 W / mK)提高了141.3%。另外,该复合材料具有提高的玻璃化转变温度,高的热稳定性和较低的热膨胀系数。这项工作对高性能复合材料的研究具有重要意义。

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