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Electrically Conductive Transparent Polymeric Nanocomposites Modified by 2D Ti3C2Tx (MXene)

机译:由2D Ti3C2Tx(MXene)改性的导电透明聚合物纳米复合材料

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摘要

The electrically conductive, transparent, and flexible self-standing thin nanocomposite films based on copolyamide matrix (coPA:Vestamelt X1010) modified with 2D Ti3C2Tx (MXene) nanosheets were prepared by casting and their electrical, mechanical and optical properties and then, were investigated. The percolation threshold of the MXene filler within the coPA matrix was found to be 0.05 vol. %, and the highest determined electrical conductivity was 1.4 × 10−2 S·cm−1 for the composite filled with 5 wt. % (1.8 vol. %) of MXene. The electrical conductivity of the as-prepared MXene was 9.1 S·cm−1, and the electrical conductivity of the MAX phase (the precursor for MXene preparation) was 172 S·cm−1. The transparency of the prepared composite films exceeded 75%, even for samples containing 5 wt. % of MXene, as confirmed by UV spectroscopy. The dynamic mechanical analysis confirmed the improved mechanical properties, such as the storage modulus, which improved with the increasing MXene content. Moreover, all the composite films were very flexible and did not break under repeated twisting. The combination of the relatively high electrical conductivity of the composites filled with low filler content, an appropriate transparency, and good mechanical properties make these materials promising for applications in flexible electronics.
机译:通过浇铸制备了基于共聚酰胺基质(coPA:Vestamelt X1010)的导电,透明和柔性的纳米复合薄膜,该薄膜由2D Ti3C2Tx(MXene)纳米片改性而成,并对其电,机械和光学性能进行了研究。发现coPA基质中MXene填料的渗透阈值为0.05 vol。 %,并且确定的最高电导率为1.4×10 -2 S·cm -1 。 %(1.8vol。%)的MXene。所制备的MXene的电导率为9.1S·cm -1 ,并且MAX相(用于MXene制备的前体)的电导率为172S·cm -1 < / sup>。所制备的复合膜的透明度甚至超过75%,即使对于含有5重量%的样品。通过紫外光谱法确认的MXene的%。动态力学分析证实了改善的机械性能,例如储能模量,其随着MXene含量的增加而改善。而且,所有复合膜都非常柔软,并且在反复扭曲下不会断裂。填充物含量低的复合材料的相对较高的电导率,适当的透明度和良好的机械性能的结合,使这些材料有望用于柔性电子产品。

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