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Electronic and Morphological Studies of Conjugated Polymers Incorporating a Disk-Shaped Polycyclic Aromatic Hydrocarbon Unit

机译:结合了盘形多环芳烃单元的共轭聚合物的电子和形态学研究

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As more research findings have shown the correlation between ordering in organic semiconductor thin films and device performance, it is becoming more essential to exercise control of the ordering through structural tuning. Many recent studies have focused on the influence of side chain engineering on polymer packing orientation in thin films. However, the impact of the size and conformation of aromatic surfaces on thin film ordering has not been investigated in great detail. Here we introduce a disk-shaped polycyclic aromatic hydrocarbon building block with a large pi surface, namely, thienoazacoronenes (TACs), as a donor monomer for conjugated polymers. A series of medium bandgap conjugated polymers have been synthesized by copolymerizing TAC with electron donating monomers of varying size. The incorporation of the TAC unit in such semiconducting polymers allows a systematic investigation, both experimentally and theoretically, of the relationships between polymer conformation, electronic structure, thin film morphology, and charge transport properties. Field effect transistors based on these polymers have shown good hole mobilities and photoresponses, proving that TAC is a promising building block for high performance optoelectronic materials.
机译:随着越来越多的研究结果表明有机半导体薄膜中的有序性与器件性能之间的相关性,通过结构调整来控制有序性变得越来越重要。最近的许多研究集中于侧链工程对薄膜中聚合物堆积取向的影响。但是,尚未详细研究芳族表面尺寸和构象对薄膜有序性的影响。在这里,我们介绍了一个具有较大pi表面的盘状多环芳烃结构单元,即硫杂氮杂酮(TAC),作为共轭聚合物的供体单体。通过使TAC与各种尺寸的供电子单体共聚,合成了一系列中带隙共轭聚合物。在此类半导体聚合物中掺入TAC单元,无论是在实验上还是理论上都可以对聚合物构象,电子结构,薄膜形态和电荷传输性质之间的关系进行系统的研究。基于这些聚合物的场效应晶体管表现出良好的空穴迁移率和光响应性,证明TAC是高性能光电材料的有前途的构建基块。

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