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二维双吡啶衍生物自组装纳米结构中四噻吩分子主链的S形构象

S-Shaped Conformation of the Quaterthiophene Molecular Backbone in Two-Dimensional Bisterpyridine-Derivative Self-Assembled Nanoarchitecture.

作者信息

Kervella Yann, Shilova Ekaterina, Latil Sylvain, Jousselme Bruno, Silly Fabien

机构信息

CEA Grenoble INAC/SPrAM UMR 5819 CEA - CNRS - Univ. J. Fourier-Grenoble 1, LEMOH, 17 Rue des Martyrs, 38054 Grenoble Cedex 9, Grenoble, France.

Ajelis, 86 rue de Paris, F-94100 Orsay, France.

出版信息

Langmuir. 2015 Dec 15;31(49):13420-5. doi: 10.1021/acs.langmuir.5b03949. Epub 2015 Dec 1.

Abstract

The conformation and the two-dimensional self-assembly of 4'-(3',4″-dihexyloxy-5,2':5',2″:5″,2‴-quaterthien-2,5‴-diyl)-bis(2,2':6',2″-terpyridine) molecules are theoretically and experimentally investigated. This molecular building block forms a hydrogen-bonded chiral supramolecular nanoarchitecture on graphite at the solid/liquid interface. Scanning tunneling microscopy (STM) shows that the molecule adopts an S-shaped conformation in this structure. DFTB+ calculations reveal that this conformation is not the lowest-energy conformation. The molecular nanoarchitecture appears to be stabilized by hydrogen bonding as well as van der Waals interactions. I-, L-, and D-shaped molecular conformations are, however, locally observed at the domain boundary, but these conformations do not self-assemble into organized 2D structures.

摘要

对4'-(3',4″-二己氧基-5,2':5',2″:5″,2‴-四噻吩-2,5‴-二基)-双(2,2':6',2″-三联吡啶)分子的构象和二维自组装进行了理论和实验研究。这种分子构建块在固/液界面的石墨上形成了氢键连接的手性超分子纳米结构。扫描隧道显微镜(STM)表明,该分子在这种结构中呈S形构象。密度泛函紧束缚(DFTB+)计算表明,这种构象不是能量最低的构象。分子纳米结构似乎通过氢键以及范德华相互作用得以稳定。然而,在畴边界局部观察到I形、L形和D形分子构象,但这些构象不会自组装成有序的二维结构。

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