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具有高对称性的全碳辐轮:模块化合成、光物理性质和表面组装。

Large all-hydrocarbon spoked wheels of high symmetry: modular synthesis, photophysical properties, and surface assembly.

机构信息

Kekulé-Institut für Organische Chemie und Biochemie, Rheinische Friedrich-Wilhelms-Universitt Bonn, Gerhard-Domagk-Strasse 1, 53121 Bonn, Germany.

出版信息

J Am Chem Soc. 2010 Feb 3;132(4):1410-23. doi: 10.1021/ja909229y.

Abstract

In a convergent modular synthesis, a very efficient pathway to shape-persistent molecular spoked wheels has been developed and applied according to the covalent-template concept. The structurally defined two-dimensional (2D) oligo(phenylene-ethynylene-butadiynylene)s (OPEBs) presented here are about 8 nm sized hydrocarbons of high symmetry. 48 alkyl chains attached to the molecular plane (hexyl and hexadecyl, respectively) guarantee a high solubility of the compounds. The structure and uniformity of these defined, stable, D(6h) symmetrical compounds is verified by MALDI-MS, GPC analysis, and high-temperature (HT) (1)H and (13)C NMR. Detailed photophysical measurements of nonaggregated molecules in solution (as confirmed by dynamic light scattering (DLS)) focus on the identification of chromophores by comparison with suitable model compounds. Moreover, time-resolved measurements including fluorescence lifetime and depolarization support the chromophore assignment and reveal the occurrence of intramolecular energy transfer. Scanning tunneling microscope (STM) characterization at the solid/liquid interface demonstrates the efficient self-assembly of the OPEBs into hexagonal 2D crystalline layers with a periodicity determined by both the size of the OPEB backbone and the length of peripheral side chains. Atomic force microscope (AFM) studies show a very different assembly behavior of the two spoked wheel molecules, on both graphite and mica. While the hexyl-substituted wheel can form stacked superstructures, hexadecyl groups prevent any ordering in the film aside from the monolayer directly in contact with the surface.

摘要

在收敛模块化合成中,根据共价模板的概念,开发并应用了一种非常有效的方法来构建形状持久的分子轮辐。这里呈现的结构定义的二维(2D)寡聚(苯乙炔-丁二炔)(OPEB)是约 8nm 大小的高对称性烃类。附着在分子平面上的 48 个烷基链(分别为己基和十六烷基)保证了化合物的高溶解性。这些定义明确、稳定、D(6h)对称化合物的结构和均匀性通过 MALDI-MS、GPC 分析和高温(HT)(1)H 和(13)C NMR 得到验证。在溶液中非聚集分子的详细光物理测量(如动态光散射(DLS)所证实)重点是通过与合适的模型化合物进行比较来鉴定发色团。此外,时间分辨测量包括荧光寿命和去极化支持发色团的分配,并揭示了分子内能量转移的发生。在固/液界面的扫描隧道显微镜(STM)表征证明了 OPEB 有效地自组装成具有由 OPEB 主链的大小和外围侧链的长度共同确定的周期性的六边形 2D 结晶层。原子力显微镜(AFM)研究表明,两种轮辐分子在石墨和云母上的组装行为非常不同。虽然己基取代的轮可以形成堆叠的超结构,但十六烷基基团除了与表面直接接触的单层之外,会阻止薄膜中的任何有序化。

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