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Rational design of two-dimensional nanoscale networks by electrostatic interactions at surfaces

机译:通过表面静电相互作用合理设计二维纳米尺度网络

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摘要

The self-assembly of aromatic carboxylic acids and cesium adatoms on a Cu(100) surface at room temperature has been investigated by scanning tunneling microscopy and X-ray photoelectron spectroscopy. The highly ordered molecular nanostructures are comprised of a central ionic coupling motif between the anionic carboxylate moieties and Cs cations that generate distinctive chiral arrangements of the network structures. The primary electrostatic interaction results in highly flexible bond lengths and geometries. The adsorbate-substrate coupling is found to be important for the determination of the structures. With the use of rod-like carboxylic linker molecules, the dimension of the porous networks can be tuned through the variation of the aromatic backbone length.
机译:通过扫描隧道显微镜和X射线光电子能谱研究了室温下Cu(100)表面上芳香羧酸和铯原子的自组装。高度有序的分子纳米结构由阴离子羧酸盐部分和Cs阳离子之间的中心离子偶联基序组成,这些基团产生独特的手性结构网络结构。初级静电相互作用导致高度灵活的键合长度和几何形状。发现吸附物-底物的偶联对于确定结构很重要。通过使用棒状羧基连接分子,可以通过改变芳族主链长度来调节多孔网络的尺寸。

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