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寡肽-聚合物取代苝二酰亚胺自组装纳线中的双重奇偶效应。

Two-fold odd-even effect in self-assembled nanowires from oligopeptide-polymer-substituted perylene bisimides.

机构信息

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

出版信息

J Am Chem Soc. 2014 Mar 12;136(10):3919-27. doi: 10.1021/ja412384p. Epub 2014 Feb 27.

Abstract

Organic nanowires are important building blocks for nanoscopic organic electronic devices. In order to ensure efficient charge transport through such nanowires, it is important to understand in detail the molecular parameters that guide self-assembly of π-conjugated molecules into one-dimensional stacks with optimal constructive π-π overlap. Here, we investigated the subtle relationship between molecular structure and supramolecular arrangement of the chromophores in self-assembled nanowires prepared from perylene bisimides with oligopeptide-polymer side chains. We observed a "two-fold" odd-even effect in circular dichroism spectra of these derivatives, depending on both the number of l-alanine units in the oligopeptide segments and length of the alkylene spacer between chromophore and oligopeptide substituents. Our results indicate that there is a complex interplay between the translation of molecular chirality into supramolecular helicity and the molecules' inherent propensity for well-defined one-dimensional aggregation into β-sheet-like superstructures in the presence of a central chromophore. Strong excitonic coupling as expressed by the appearance of hypsochromically and bathochromically shifted UV-vis absorptions and strong CD signals was systematically observed for molecules with an odd number of l-alanines in the side chains. The latter derivatives gave rise to nanowires with a significantly higher electron mobility. Our results, hence, provide an important design rule for self-assembled organic nanowires.

摘要

有机纳维是纳米尺度有机电子器件的重要构建模块。为了确保通过这些纳维实现有效的电荷传输,了解指导π共轭分子自组装成具有最佳建设性π-π重叠的一维堆叠的分子参数非常重要。在这里,我们研究了具有寡肽-聚合物侧链的并苯双酰亚胺自组装纳维中色素的分子结构和超分子排列之间的细微关系。我们观察到这些衍生物的圆二色性光谱中存在“两倍”奇偶效应,这取决于寡肽段中 l-丙氨酸单元的数量以及发色团和寡肽取代基之间的亚烷基间隔的长度。我们的结果表明,在存在中心发色团的情况下,分子手性向超分子螺旋的转化与分子固有倾向于形成定义明确的一维聚集到β-片状超结构之间存在复杂的相互作用。对于侧链中具有奇数个 l-丙氨酸的分子,系统地观察到了强的激子耦合,表现为蓝移和红移的紫外可见吸收和强的 CD 信号。后者衍生物产生了具有显著更高电子迁移率的纳维。因此,我们的结果为自组装有机纳维提供了一个重要的设计规则。

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