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Simultaneously Improved Thermal and Dielectric Performance of Epoxy Composites Containing Ti3C2Tx Platelet Fillers

机译:同时提高含有Ti3C2TX血小板填料的环氧复合材料的热和介电性能

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摘要

Polymer composites with enhanced thermal and dielectric properties can be widely used in electric and energy related applications. In this work, epoxy composites have been prepared with Ti C T , one of the most studied MXene materials that can be massively produced by direct etching using hydrofluoric acid. The addition of conductive two dimensional Ti C T platelet fillers leads to improved but anisotropic thermal conductivity of the composites. The through-plane thermal conductivity reaches 0.583 Wm K and the in-plane thermal conductivity reaches 1.29 Wm K when filler content is 40 wt% (21.3 vol%), achieving enhancements of 2.92 times and 10.65 times respectively, as compared with epoxy matrix. The dielectric permittivity of epoxy composite is enhanced by a factor of ~2.25 with 40 wt% fillers, and the dielectric losses are within a small value of 0.02. The results prove the effectiveness of Ti C T in simultaneously improving thermal and dielectric performance of epoxy composites, and it is deduced that further improvements may be obtained by using Ti C T nanoflake fillers.
机译:具有增强的热和介电性能的聚合物复合材料可广泛用于电气和能量相关的应用中。在这项工作中,通过使用氢氟酸直接蚀刻来制备环氧复合材料,其中可以通过使用氢氟酸直接蚀刻来大规模生产的MXENE材料之一。添加导电二维Ti C T血小板填料导致复合材料的改善但各向异性的导热率。当填充物含量为40wt%(21.3 Vol%)时,贯穿平面导热率达到0.583wm k,并且在填充物含量为40wt%(21.3 Vol%),相比,与环氧基质相比,在填充含量为40wt%(21.3 Vol%)时,达到2.92倍和10.65次的增强。环氧复合材料的介电常数增强了〜2.25的含量为40wt%填料,介电损耗在0.02的较小值范围内。结果证明了Ti C T同时提高环氧复合材料的热和介电性能的有效性,推导出通过使用Ti C T纳米辊填料来获得进一步的改进。

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