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PEDOT:PSS/graphene quantum dots films with enhanced thermoelectric properties via strong interfacial interaction and phase separation

机译:PEDOT:PSS /石墨烯量子点薄膜通过强界面相互作用和相分离而具有增强的热电性能

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摘要

The typical conductive polymer of PEDOT:PSS has recently attracted intensive attention in thermoelectric conversion because of its low cost and low thermal conductivity as well as high electrical conductivity. However, compared to inorganic counterparts, the relatively poor thermoelectric performance of PEDOT:PSS has greatly limited its development and high-tech applications. Here, we report a dramatic enhancement in the thermoelectric performance of PEDOT:PSS by constructing unique composite films with graphene quantum dots (GQDs). At room temperature, the electrical conductivity and Seebeck coefficient of PEDOT:PSS/GQDs reached to 7172 S/m and 14.6 μV/K, respectively, which are 30.99% and 113.2% higher than those of pristine PEDOT:PSS. As a result, the power factor of the optimized PEDOT:PSS/GQDs composite is 550% higher than that of pristine PEDOT:PSS. These significant improvements are attributed to the ordered alignment of PEDOT chains on the surface of GQDs, originated from the strong interfacial interaction between PEDOT:PSS and GQDs and the separation of PEDOT and PSS phases. This study evidently provides a promising route for PEDOT:PSS applied in high-efficiency thermoelectric conversion.
机译:PEDOT:PSS的典型导电聚合物由于其低成本,低导热率以及高导电率,最近在热电转换中引起了广泛的关注。但是,与无机材料相比,PEDOT:PSS相对较差的热电性能极大地限制了其开发和高科技应用。在这里,我们报道了通过构建具有石墨烯量子点(GQD)的独特复合膜,PEDOT:PSS的热电性能得到了显着提高。在室温下,PEDOT:PSS / GQDs的电导率和塞贝克系数分别达到7172 S / m和14.6μV/ K,分别比原始PEDOT:PSS高30.99%和113.2%。结果,优化的PEDOT:PSS / GQDs复合材料的功率因数比原始PEDOT:PSS的功率因数高550%。这些重大改进归因于PQOT表面上PEDOT链的有序排列,这是由于PEDOT:PSS和GQD之间的强界面相互作用以及PEDOT和PSS相的分离所致。这项研究显然为将PED​​OT:PSS应用于高效热电转化提供了一条有希望的途径。

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