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Synthesis and Properties of Conjugated Polymers Based on a Ladderized Anthanthrene Unit

机译:梯级蒽嵌位单元共轭聚合物的合成与性能

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摘要

Polycyclic aromatic hydrocarbons (PAHs) are interesting building blocks for the preparation of conjugated polymers due to their extended π surface and planar conformation. However, their use as comonomer in conjugated polymers often leads to nonplanar main chains as a consequence of high steric hindrance at the linking point. Herein, we report the synthesis of a ladderized anthanthrene unit using an sp3 carbon bridge. Three conjugated copolymers with fluorene, isoindigo, and bithiophene derivatives have been synthesized and characterized to study the effect of such ladderization on the electronic properties. The dihedral angle between the ladderized anthanthrene and adjacent units has been significantly reduced by the formation of the sp3 carbon bridge, thus eliminating the steric hindrance with the proton at the peri position of the anthanthrene unit and red-shifting the absorption spectrum by 25 nm.
机译:多环芳烃(PAHs)由于其扩展的π表面和平面构象,是制备共轭聚合物的有趣结构单元。然而,由于它们在连接点处的高位阻,它们在共轭聚合物中用作共聚单体常常导致主链不平。本文中,我们报道了使用sp 3 碳桥合成梯级蒽单元的方法。已经合成了具有芴,异靛蓝和联噻吩衍生物的三种共轭共聚物,并对其进行了表征,以研究这种阶梯化对电子性能的影响。 sp 3 碳桥的形成已大大降低了梯级蒽与相邻单元之间的二面角,从而消除了在蒽单元周围位置的质子和红色邻位的质子位阻。将吸收光谱偏移25 nm。

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