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Doping of donor-acceptor polymers with long side chains via solution mixing for advancing thermoelectric properties

机译:通过溶液混合掺杂具有长边链的供体受体聚合物,用于推进热电性能

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摘要

One-step doping of conjugated polymers by solution mixing is typically performed instead of sequential doping because of its simplicity. However, doped polymer solutions often exhibit poor solubility, and the presence of dopants in the produced films can disturb the molecular ordering of polymer structures. In this work, effective pairs of two donor-acceptor (D-A) type polymers and a molecular dopant characterized by high solution stability and good thermoelectric properties of the prepared thin films have been reported. The presence of long side chains in the polymer structures preserves their original solubilities and crystallinity in the solution and thin-film states, respectively, even at large amounts of added dopant (up to 38 mol%). Furthermore, the relatively shallow levels of the highest occupied molecular orbitals of the selected D-A polymers enable efficient charge transfer from the dopant species. Owing to their good charge transport properties, the doped D-A polymers exhibit outstanding thermoelectric properties with a maximum power factor of 31.5 mu W m(-1) K-2, which is more than an order of magnitude higher than those of the control samples prepared from donor-only poly(3-hexylthiophene).
机译:通常通过溶液混合进行共轭聚合物的一步掺杂,而不是顺序掺杂,因为其简单性。然而,掺杂的聚合物溶液通常具有差的溶解度,并且所产生的薄膜中的掺杂剂的存在可以干扰聚合物结构的分子序。在这项工作中,已经报道了两种供体(D-A)型聚合物的有效成对和由高溶液稳定性和制备的薄膜的良好热电性能的分子掺杂剂。在聚合物结构中的长边链的存在在溶液和薄膜状态下,即使大量添加的掺杂剂(高达38mol%),也可以在溶液和薄膜状态下保持其原始溶解度和结晶度。此外,所选D-A聚合物的最高占用分子轨道的相对较浅的水平使得能够从掺杂剂物种中产生有效的电荷转移。由于其电荷运输性能良好,掺杂的DA聚合物具有出色的热电性能,最大功率因数为31.5μm(-1)k-2,其比制备的对照样品高出一个高于量的数量级来自唯一的供体(3-己基噻吩)。

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