Racemic Dimers as Models of Chiral Macrocycles Self-Assembled on Pyrolytic Graphite

E. Ukraintsev, V. Houska, J. Vacek, B. Rezek
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引用次数: 1

Abstract

Fully aromatic helicenes are fascinating building blocks for the construction of inherently chiral macrocyclic nanocarbons. Such helicene-based non-planar macrocycles interact with each other and underlying substrate and form various 2D crystals. However, the role of their chirality remains unknown. In Atomic Force Microscopy (AFM) the macrocycles show stripes with six-fold symmetry but only faintly visible internal structure that is not sufficient to see individual adsorbed molecules and identify their chirality. Here, AFM data of self-assembled helicene-based 2D molecular crystals are analyzed by a new computational method that combines various information from AFM image and expected molecular shape taken from molecular dynamic simulations. Possible molecule arrangements are thereby computed and four basic structural elements (dimers) with the smallest deviation from AFM topography image are found. Validation procedure using larger AFM image with many 2D crystal domains improves the resolution in AFM data above the expected value for ultrasharp cantilevers and allows reliable and reproducible reconstruction of molecular shape, precise molecules position within the 2D crystal as well their chirality. The presented results and developed mathematical method are generally applicable to study ensembles of molecules with known atom coordinates and to any image with periodic pattern.
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外消旋二聚体作为手性大环在热解石墨上自组装的模型
全芳香族螺旋烯是构建固有手性大环纳米碳的重要组成部分。这种螺旋烯基非平面大环与衬底相互作用,形成各种二维晶体。然而,它们的手性的作用仍然未知。在原子力显微镜(AFM)下,大环显示出具有六重对称的条纹,但仅能隐约看到内部结构,这不足以看到单个吸附分子并识别它们的手性。本文采用一种新的计算方法,将AFM图像中的各种信息与分子动力学模拟中获得的预期分子形状相结合,分析了螺旋烯基自组装二维分子晶体的AFM数据。由此计算了可能的分子排列,并找到了与AFM形貌图像偏差最小的四种基本结构元素(二聚体)。使用具有许多二维晶体域的更大AFM图像的验证程序提高了AFM数据的分辨率,高于超尖锐悬臂的期望值,并允许可靠和可重复地重建分子形状,精确的分子位置在二维晶体中以及它们的手性。所提出的结果和发展的数学方法一般适用于研究已知原子坐标的分子系综和任何具有周期图案的图像。
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