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Preparation of flexible conductive films based on polymer composites with tetrathiafulvalene nanowires

机译:基于四硫富瓦烯纳米线聚合物复合材料的柔性导电膜的制备

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We report the preparation of the self-supported films based on the tetrathiafulvalene (TTF)/polymer composites as all-organic flexible conductive materials. The polymer composite films containing TTF nanofibers were fabricated using various kinds of the lipophilic polymer matrices. From the evaluation of conductivity, transparency, and the film-formability of the composite, several tendencies were observed. The increase of the conductivity of the films corresponded to the decrease of the transparency. The decrease of the molecular weight of the polymer matrices contributed to the increase of the conductivity and the decrease of the film-formability. Finally, we accomplished to obtain the self-supported flexible films with the higher conductivity than those of the TTF crystal films. The condensation of the TTF nanofibers at the surfaces contributes to obtaining higher conductivity and maintaining good film-formability.
机译:我们报道了基于四硫富瓦烯(TTF)/聚合物复合材料作为全有机柔性导电材料的自支撑膜的制备。使用各种亲脂性聚合物基质来制备包含TTF纳米纤维的聚合物复合膜。通过评价复合材料的导电性,透明性和成膜性,观察到了几种趋势。膜的电导率的增加对应于透明度的降低。聚合物基体分子量的降低有助于电导率的增加和成膜性的降低。最后,我们获得了比TTF晶体膜具有更高电导率的自支撑柔性膜。 TTF纳米纤维在表面的凝结有助于获得更高的电导率并保持良好的成膜性。

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