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Synthesis and Optoelectronic Properties of New Methoxy-Substituted Diketopyrrolopyrrole Polymers

机译:新型甲氧基取代的二酮吡咯并吡咯聚合物的合成及光电性能

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The introduction of functional groups with varying electron-donating/-withdrawing properties at the β-position of diketopyrrolopyrrole (DPP) has been shown to affect the optoelectronic properties of the polymers. We report the synthesis of a new diketopyrrolopyrrole monomer wherein a strong electron-donating substituent, a methoxy group, was incorporated at the β-position in an effort to modulate polymer properties. Homopolymers and co-polymers of the new β-methoxy DPP and nonderivatized DPP were synthesized, and their properties were measured by cyclic voltammetry and UV–vis–near-infrared. Density functional theory computations also were employed to predict the degree of planarity of β-methoxy oligomers to probe the significance of the newly introduced S–O conformational lock. The combined experimental and computational results showed a reduction in the gap between highest occupied molecular orbital/lowest unoccupied molecular orbital levels, a redshift toward the near-infrared region, and an increased planarity in the β-methoxy polymers.
机译:已显示在二酮吡咯并吡咯(DPP)的β-位引入具有不同的供电子/吸电子性质的官能团会影响聚合物的光电性能。我们报道了一种新的二酮吡咯并吡咯单体的合成,其中一个强的供电子性取代基甲氧基被掺入了β位以调节聚合物的性能。合成了新的β-甲氧基DPP和非衍生化DPP的均聚物和共聚物,并通过循环伏安法和紫外-可见-近红外光谱测量了它们的性能。密度泛函理论计算也被用来预测β-甲氧基低聚物的平面度,以探究新引入的S–O构象锁的意义。综合的实验和计算结果表明,最高占据分子轨道/最低未占据分子轨道水平之间的间隙减小,向近红外区域的红移以及β-甲氧基聚合物的平面度增加。

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