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首页> 外文期刊>Macromolecules >Fine Molecular Tuning of Diketopyrrolopyrrole-Based Polymer Semiconductors for Efficient Charge Transport: Effects of Intramolecular Conjugation Structure
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Fine Molecular Tuning of Diketopyrrolopyrrole-Based Polymer Semiconductors for Efficient Charge Transport: Effects of Intramolecular Conjugation Structure

机译:基于二酮吡咯的聚合物半导体的精细分子调谐,用于高效电荷输送:分子内缀合结构的影响

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To improve the charge carrier mobility of diketopyrrolopyrrole block is controlled using vinylene moieties, and its effects on crystalline donor acceptor copolymer semiconductors, the length of the donor building structure and charge transport are systematically studied. We synthesize P29DPP-TBT with two vinylene linkages between thiophene units and compare it with P29-DPP-TVT with single vinylene linkage. Density functional theory calculations predict enhanced backbone planarity of P29-DPP-TBT compared to P29-DPP-TVT, which can be related to the increased conjugation length of P29-DPP-TBT as proved by the increased free exciton bandwidth extracted from UV vis absorption spectra and the wavenumber shift of the C-C peaks to higher values in Raman spectra. From two-dimensional grazing incident X-ray diffraction studies, it is turned out that the paracrystalline disorder is lower in P29-DPP-TBT than in P29-DPP-TVT. Near-edge X-ray absorption fine structure spectroscopy reveal that more edge-on structure of polymer backbone is formed in the case of P29-DPP-TBT. By measuring the temperature dependence of the charge carrier mobilities, it is turned out that the activation energy for charge hopping is lower for P29-DPP-TBT than for P29-DPP-TVT. Collectively, these results imply that the substitution of extended z-conjugated donor moiety of polymeric semiconductors can yield a more planar backbone structure and thus enhanced intermolecular interaction which enables more perfect crystalline structure as well as enhanced charge transport behavior.
机译:为了改善使用乙烯基部分控制二酮吡咯块块的电荷载体迁移率,其对晶体供体共聚物半导体的影响,系统地研究了施主建筑结构和电荷运输的长度。我们用噻吩单元之间的两个乙烯基键合并了P29DPP-TBT,并将其与单乙烯基连接的P29-DPP-TVT进行比较。密度函数理论计算预测P29-DPP-TBT的增强骨干平面性与P29-DPP-TVT相比,这可以与P29-DPP-TBT的增加的共轭长度相关,从UV Vis吸收中提取的增加的自由激子带宽证明光谱和CC峰值的波浪向量达到拉曼光谱中的较高值。从二维放牧入射X射线衍射研究中,证明P29-DPP-TBT的脱晶紊乱比P29-DPP-TVT在P29-DPP-TVT中。近边X射线吸收细结构光谱揭示了在P29-DPP-TBT的情况下形成了聚合物主链的更多边缘结构。通过测量电荷载体迁移率的温度依赖性,证明了P29-DPP-TBT的电荷跳跃的激活能量低于P29-DPP-TVT。总的来说,这些结果暗示了聚合物半导体的延伸Z-缀合供体部分的替代可以产生更平坦的主链结构,从而提高分子间相互作用,这使得更完美的晶体结构以及增强的电荷传输行为。

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