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Controlled assembly of large pi-conjugated n-type molecules on Au(111)

机译:大的π共轭n型分子在Au(111)上的受控组装

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Controlled assemblies of the n-type 5,6,11,12,17,18-hexaazatrinaphthylene (HATNA) molecule and its derivatives, 5,6,11,12,17,18- hexaazatrinaphthylene- 2,8,14-tricarboxylic acid (HATNA-COOH) and 2,8,14-tri(3,4,5-tridodecyloxyphenylaminocarbonyl)5,6,11,12,17,18-hexaazatrinaphthylene (HATNA-den), on Au(111) electrodes have been investigated using electrochemical scanning tunneling microscopy (ECSTM). Orientations of HATNA and HATNA-COOH molecules on Au(111) electrodes can be manipulated with potential modulation and imaged in situ by ECSTM. By increasing the applied electrode potentials, the HATNA and HATNA-COOH molecules were tuned at the solid/liquid interface to orient from parallel to perpendicular to the electrode surface because of dominating adsorbate-adsorbate interactions such as pi-pi stacking, hydrogen bonding, and weak dipole-dipole interactions and deprotonation of -COOH groups of the HATNA-COOH molecule at higher positive potentials. However, a stable adsorption orientation independent of applied electrode potentials was observed for the tridendron-containing molecule HATNA-den due to strong interactions between the alkyl chains and the Au(111) substrate, and between pi- electrons of the aromatic rings and the Au(111) substrate. The ability to orient adsorbates and to change surface structures by controlling the substrate potential is a great boon to those attempting to create designer two-dimensional structures.
机译:n型5,6,11,12,17,18-六氮杂萘甲酸(HATNA)分子及其衍生物5,6,11,12,17,18-六氮杂萘-2,8,14-三羧酸的受控组装在Au(111)电极上研究了(HATNA-COOH)和2,8,14-三(3,4,5-三十二烷基氧基苯基氨基羰基)5,6,11,12,17,18-六氮杂萘萘(HATNA-den)使用电化学扫描隧道显微镜(ECSTM)。 HATNA和HATNA-COOH分子在Au(111)电极上的取向可以通过电势调制进行操作,并通过ECSTM原位成像。通过增加施加的电极电势,由于主要的吸附物-吸附物相互作用(例如pi-pi堆积,氢键和氢键作用),HATNA和HATNA-COOH分子在固/液界面处从平行到垂直于电极表面取向。在较高的正电势下,HATNA-COOH分子的弱偶极-偶极相互作用和-COOH基团的去质子化。然而,由于烷基链与Au(111)底物之间以及芳环与Au的π电子之间有很强的相互作用,对于含十三碳烯的分子HATNA-den观察到了稳定的吸附取向,与所施加的电极电位无关。 (111)基板。通过控制基材的电势来定向吸附物和改变表面结构的能力,对那些尝试创建设计者二维结构的人来说是一个巨大的福音。

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