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Dimensionality effects in the electronic structure of organic semiconductors consisting of polar repeat units

机译:由极性重复单元组成的有机半导体的电子结构中的尺寸效应

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摘要

In conjugated organic molecules, excitation gaps typically decrease reciprocally with increasing the number of repeat units, n. This usually holds for individual molecules as well as for the corresponding bulk materials. Here, we show using density-functional theory calculations that a qualitatively different evolution is found for layers built from molecules consisting of polar repeat units. Whereas a 1 -dependence is still observed in the case of isolated polar molecules, the global gap decreases essentially linearly with n in the corresponding 2D-periodic systems and vanishes beyond a certain molecular length, with the frontier states being localized at opposite ends of the layer. The latter is accompanied by a saturation of the dipole moment per molecule, an effect not observed in the isolated polar molecules. Interestingly, in both cases the limit of the gap for long (but finite) molecules differs qualitatively from that of infinite length obtained in ID-periodic and 3D-periodic calculations, the latter serving as models for polymers and the bulk. We rationalize these dimensionality effects as a consequence of the potential gradient within the finite-length layers. They arise from the collective action of intra-molecular dipoles in the 2D periodic layers and can be traced back to surface effects.
机译:在共轭有机分子中,激发间隙通常会随着重复单元n的增加而相互减少。这通常适用于单个分子以及相应的块状材料。在这里,我们使用密度泛函理论计算表明,从由极性重复单元组成的分子构建的层中发现了质的不同演化。尽管在孤立的极性分子的情况下仍观察到1 / n依赖性,但全局间隙在相应的2D周期系统中与n基本上线性减小,并消失超过一定的分子长度,而前沿态位于相对的两端层的后者伴随着每个分子的偶极矩饱和,在分离的极性分子中未观察到这种效应。有趣的是,在这两种情况下,长(但有限)分子的间隙极限与ID周期和3D周期计算中获得的无限长的定性性质不同,后者用作聚合物和主体的模型。由于有限长度层内的电位梯度,我们合理化了这些尺寸效应。它们是由二维周期层中分子内偶极子的集体作用引起的,可以追溯到表面效应。

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  • 来源
    《Organic Electronics》 |2012年第12期|3165-3176|共12页
  • 作者单位

    Institute of Solid State Physics, Craz University of Technology, 8010 Craz, Austria;

    Department of Materials and Interfaces, Weizmann Institute of Science, 76100 Rehovoth, Israel,Department of Physical Electronics, Tel-Aviv University, 69978 Tel-Aviv, Israel;

    Institute of Solid State Physics, Craz University of Technology, 8010 Craz, Austria;

    Institute of Solid State Physics, Craz University of Technology, 8010 Craz, Austria,Fritz-Haber Insitut der Max-Planck Gesellschaft, Faradayweg 4-6, Berlin, Germany;

    Department of Materials and Interfaces, Weizmann Institute of Science, 76100 Rehovoth, Israel;

    Department of Materials and Interfaces, Weizmann Institute of Science, 76100 Rehovoth, Israel;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    energy gap; polar surface; dimensionality effects; band-structure calculations; polar molecules; thin-film electrostatics;

    机译:能隙极性表面尺寸影响;带结构计算;极性分子薄膜静电;

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