Jia Baoxin, Enache Mihaela, Gliemann Bettina D, Jocic Angelina, Kivala Milan, Stöhr Meike
Zernike Institute for Advanced Materials, University of Groningen Netherlands
Chair of Organic Chemistry I, Department of Chemistry and Pharmacy, Universität Erlangen-Nürnberg Germany.
Nanoscale Adv. 2025 Jun 17. doi: 10.1039/d5na00289c.
The self-assembly of a carboxy-functionalized triarylamine derivative (CTA) at the nonanoic acid-highly oriented pyrolytic graphite (NA-HOPG) interface is investigated using scanning tunnelling microscopy (STM). The study reveals that CTA molecules can self-assemble into diverse two-dimensional long-range ordered networks at the NA-HOPG interface, with their formation influenced by the concentration of the solution and the bias voltage of the STM tip. Moreover, reversible switching between the porous structures and the close-packed structure is induced by changing the bias polarity. We identify that for this phenomenon to occur the negatively polarised O atoms of the carboxylic groups of CTA play an important role, enabling the CTA molecules at the interface to desorb and re-adsorb which is essential for switching from one ordered arrangement to the other. Our findings demonstrate that reversible switching can be controlled by manipulating the solution concentration as well as the applied bias voltage, which holds promise for controlling switchable molecular systems at the solid-liquid interface.
利用扫描隧道显微镜(STM)研究了羧基官能化三芳基胺衍生物(CTA)在壬酸-高定向热解石墨(NA-HOPG)界面的自组装。研究表明,CTA分子可在NA-HOPG界面自组装成多种二维长程有序网络,其形成受溶液浓度和STM针尖偏置电压的影响。此外,通过改变偏置极性可诱导多孔结构与密排结构之间的可逆切换。我们确定,CTA羧基的带负电O原子对于这种现象的发生起着重要作用,使界面处的CTA分子能够解吸和重新吸附,这对于从一种有序排列切换到另一种排列至关重要。我们的研究结果表明,可逆切换可通过控制溶液浓度和施加的偏置电压来实现,这为控制固液界面的可切换分子系统带来了希望。