Yuan Qun-Hui, Wan Li-Jun, Jude Hershel, Stang Peter J
Institute of Chemistry, Chinese Academy of Sciences, Beijing, China 100080.
J Am Chem Soc. 2005 Nov 23;127(46):16279-86. doi: 10.1021/ja0549300.
The structure and conformation of three self-assembled supramolecular species, a rectangle, a square, and a three-dimensional cage, on Au111 surfaces were investigated by scanning tunneling microscopy. These supramolecular assemblies adsorb on Au111 surfaces and self-organize to form highly ordered adlayers with distinct conformations that are consistent with their chemical structures. The faces of the supramolecular rectangle and square lie flat on the surface, preserving their rectangle and square conformations, respectively. The three-dimensional cage also forms well-ordered adlayers on the gold surface, forming regular molecular rows of assemblies. When the rectangle and cage were mixed together, the assemblies separated into individual domains, and no mixed adlayers were observed. These results provide direct evidence of the noncrystalline solid-state structures of these assemblies and information about how they self-organize on Au111 surfaces, which is of importance in the potential manufacturing of functional nanostructures and devices.
通过扫描隧道显微镜研究了三种自组装超分子物种(一个矩形、一个正方形和一个三维笼状结构)在Au111表面的结构和构象。这些超分子聚集体吸附在Au111表面并自组织形成具有独特构象的高度有序吸附层,这些构象与其化学结构一致。超分子矩形和正方形的面分别平躺在表面上,保持其矩形和正方形构象。三维笼状结构也在金表面形成了有序的吸附层,形成了规则的聚集体分子行。当矩形和笼状结构混合在一起时,聚集体分离成单个区域,未观察到混合吸附层。这些结果为这些聚集体的非晶态固态结构提供了直接证据,并提供了有关它们如何在Au111表面自组织的信息,这对于功能性纳米结构和器件的潜在制造具有重要意义。