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具有“单堆叠”苝二酰亚胺和四噻吩纳米线的分级结构微纤维。

Hierarchically structured microfibers of "single stack" perylene bisimide and quaterthiophene nanowires.

机构信息

Institute of Materials, Laboratory of Macromolecular and Organic Materials, Ecole Polytechnique Fédérale de Lausanne (EPFL) , EPFL - STI - IMX - LMOM, MXG 037, Station 12, 1015 Lausanne, Switzerland.

出版信息

ACS Nano. 2013 Oct 22;7(10):8498-508. doi: 10.1021/nn402234t. Epub 2013 Sep 16.

Abstract

Organic nanowires and microfibers are excellent model systems for charge transport in organic semiconductors under nanoscopic confinement and may be relevant for future nanoelectronic devices. For this purpose, however, the preparation of well-ordered organic nanowires with uniform lateral dimensions remains a challenge to achieve. Here, we used the self-assembly of oligopeptide-substituted perylene bisimides and quaterthiophenes to obtain well-ordered nanofibrils. The individual nanofibrils were investigated by spectroscopic and imaging methods, and the preparation of hierarchically structured microfibers of aligned nanofibrils allowed for a comprehensive structural characterization on all length scales with molecular level precision. Thus, we showed that the molecular chirality resulted in supramolecular helicity, which supposedly serves to suppress lateral aggregation. We also proved that, as a result, the individual nanofibrils comprised a single stack of the π-conjugated molecules at their core. Moreover, the conformational flexibility between the hydrogen-bonded oligopeptides and the π-π stacked chromophores gave rise to synergistically enhanced strong π-π interactions and hydrogen-bonding. The result is a remarkably tight π-π stacking inside the nanofibrils, irrespective of the electronic nature of the employed chromophores, which may render them suitable nanowire models to investigate one-dimensional charge transport along defined π-π stacks of p-type or n-type semiconductors.

摘要

有机纳线和微纤维是在纳米尺度限制下研究有机半导体中电荷输运的理想模型体系,并且可能与未来的纳米电子器件相关。然而,为了实现这一目标,制备具有均匀横向尺寸的有序有机纳线仍然是一个挑战。在这里,我们使用寡肽取代的苝二酰亚胺和四噻吩的自组装来获得有序的纳米纤维。通过光谱和成像方法研究了单个纳米纤维,并通过制备各向异性排列的纳米纤维微纤维来进行全面的结构表征,从而实现了在所有长度尺度上的分子级精度。因此,我们表明分子手性导致超分子螺旋,这可能有助于抑制横向聚集。我们还证明,由于这个原因,单个纳米纤维在其核心包含单个堆叠的π-共轭分子。此外,氢键寡肽和π-π堆积的生色团之间的构象灵活性导致协同增强的强π-π相互作用和氢键。其结果是,无论所采用的生色团的电子性质如何,纳米纤维内部都具有非常紧密的π-π堆积,这使得它们成为适合研究一维 p 型或 n 型半导体中沿定义的π-π堆叠的电荷输运的纳米线模型。

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