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Enhanced Molecular Packing of a Conjugated Polymer with High Organic Thermoelectric Power Factor

机译:具有高有机热电功率因数的共轭聚合物的增强分子堆积

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The detailed relationship between film morphology and the performance of solution processed n-type organic thermoelectric (TE) devices is investigated. It is interesting to find that the better ordered molecular packing of n-type polymer can be achieved by adding a small fraction of dopant molecules, Which is not observed before. The better ordered structure will be favorable for the charge carrier mobility. Meanwhile, dopant molecules improve free carrier concentration via doping reaction. As a result, a significantly enhanced electrical conductivity (12 S cm(-1)) and power factor (25.5 mu W m(-1) K-2) of TE devices are obtained. Furthermore, the phase separation of conjugated polymer/dopants is observed for the first time with resonant soft X-ray-scattering.-Our results indicate that the miscibility of conjugated polymers and dopants plays an important role on controlling the morphology and doping efficiency of TE devices.
机译:研究了薄膜形态与固溶n型有机热电(TE)器件性能之间的详细关系。有趣的是,可以通过添加一小部分掺杂剂分子来实现n型聚合物更好的分子堆积,这是以前从未观察到的。更好的有序结构将有利于电荷载流子迁移率。同时,掺杂剂分子通过掺杂反应提高了自由载流子浓度。结果,获得了显着提高的TE设备的电导率(12 S cm(-1))和功率因数(25.5μW m(-1)K-2)。此外,共轭聚合物/掺杂物的相分离是通过共振软X射线散射首次观察到的。-我们的结果表明,共轭聚合物和掺杂物的混溶性在控制TE的形态和掺杂效率方面起着重要作用。设备。

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