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Photoinduced Anisotropic Assembly of Conjugated Polymers in Insulating Polymer Blends

机译:绝缘聚合物共混物中共轭聚合物的光诱导各向异性组装。

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Low-dose UV irradiation of poly(3-hexylthiophene) (P3HT)-insulating polymer (polystyrene (PS) or polyisobutylene (PIB)) blend solutions led to the formation of highly ordered P3HT nanofibrillar structures in solidified thin films. The P3HT nanofibers were effectively interconnected through P3HT islands phase-separated from insulating polymer regions in blend films comprising a relatively low fraction of P3HT. Films prepared with a P3HT content as low as 5 wt % exhibited excellent macroscopic charge transport characteristics. The impact of PS on P3HT intramolecular and intermolecular interactions was systematically investigated. The presence of PS chains appeared to assist in the UV irradiation process of the blend solutions to facilitate molecular interactions of the semiconductor component, and to enhance P3HT chain interactions during spin coating because of relatively unfavorable P3HT-PS chain interactions. However, P3HT lamellar packing was hindered in the presence of PS chains, because of favorable hydrophobic interactions between the P3HT hexyl substituents and the PS chains. As a result, the lamellar packing d-spacing increased, and the coherence length corresponding to the lamellar packing decreased, as the amount of PS in the blend films increased.
机译:聚(3-己基噻吩)(P3HT)绝缘聚合物(聚苯乙烯(PS)或聚异丁烯(PIB))共混溶液的低剂量紫外线照射导致在固化薄膜中形成高度有序的P3HT纳米原纤维结构。 P3HT纳米纤维通过与包含相对低比例的P3HT的共混膜中的绝缘聚合物区域相分离的P3HT岛而有效互连。 P3HT含量低至5 wt%的薄膜表现出优异的宏观电荷传输特性。系统研究了PS对P3HT分子内和分子间相互作用的影响。由于相对不利的P3HT-PS链相互作用,PS链的存在似乎有助于共混溶液的UV辐射过程以促进半导体组分的分子相互作用,并在旋涂期间增强P3HT链相互作用。但是,由于P3HT己基取代基和PS链之间有利的疏水相互作用,在PS链存在下阻碍了P3HT的层状堆积。结果,随着共混膜中PS的量增加,层状堆积的d-间隔增加,并且对应于层状堆积的相干长度减小。

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