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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Self-Assembled Dehydro[24]annulene Monolayers at the Liquid/Solid Interface: Toward On-Surface Synthesis of Tubular pi-Conjugated Nanowires
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Self-Assembled Dehydro[24]annulene Monolayers at the Liquid/Solid Interface: Toward On-Surface Synthesis of Tubular pi-Conjugated Nanowires

机译:在液体/固体界面上的自组装脱氢[24]环戊烯单层:管状π共轭纳米线的表面合成。

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We have studied the self-assembly behavior of dehydro[24]annulene (D24A) derivatives 1, 2a-2d, and 3a-3c at the liquid/solid interface using scanning tunneling microscopy (STM). Both the relative placement and the nature of the four D24A substituents strongly influence the self-assembly pattern. Overall, the eight D24A derivatives examined in this study display seven types of 2D packing patterns. The D24A derivatives 1, 2a, and 3a have either two or four stearate groups and adopt face-on configurations of their macrocyclic cores with respect to the highly oriented pyrolytic graphite (HOPG) surface. Their 2D packing pattern is determined by the interchain spacings and number of stearate substituents. The D24A derivatives 2b-2d and 3b-3c bear hydrogen-bonding carbamate groups to further strengthen intermolecular interactions. Face-on patterns were also observed for most of these compounds, while an unstable edge-on self-assembly was observed in the case of 2b at room temperature. Stable edge-on self-assemblies of D24A derivatives were sought for this work as an important stepping stone to achieving the on-surface topochemical polymerization of these carbon-rich macrocydes into tubular pi-conjugated nanowires. The overall factors determining the 2D packing patterns of D24As at the liquid/solid interface are discussed on the basis of theoretical simulations, providing useful guidelines for controlling the self-assembly pattern of future D24A macrocycles.
机译:我们使用扫描隧道显微镜(STM)研究了在液体/固体界面上的脱氢[24]环戊烯(D24A)衍生物1、2a-2d和3a-3c的自组装行为。四个D24A取代基的相对位置和性质都强烈影响自组装模式。总体而言,在这项研究中检查的八种D24A衍生物显示了七种2D填充模式。 D24A衍生物1、2a和3a具有两个或四个硬脂酸酯基团,并且相对于高度取向的热解石墨(HOPG)表面,其大环核呈面对结构。它们的2D堆积模式由链间间距和硬脂酸酯取代基的数量决定。 D24A衍生物2b-2d和3b-3c带有氢键连接的氨基甲酸酯基团,以进一步增强分子间的相互作用。对于大多数这些化合物,还观察到面对模式,而在室温下2b的情况下观察到不稳定的边缘自组装。寻求稳定的D24A衍生物的边缘自组装作为这项工作的重要踏脚石,以实现将这些富含碳的大分子在表面上拓扑化学聚合成管状的pi共轭纳米线。在理论模拟的基础上,讨论了确定D24A在液/固界面处二维填充模式的总体因素,为控制未来D24A大环的自组装模式提供了有用的指导。

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