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首页> 外文期刊>International Journal of Molecular Sciences >Molecular Self-Assembly at Metal-Electrolyte Interfaces
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Molecular Self-Assembly at Metal-Electrolyte Interfaces

机译:金属-电解质界面的分子自组装

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The self-assembly of molecular layers has become an important strategy in modern design of functional materials. However, in particular, large organic molecules may no longer be sufficiently volatile to be deposited by vapor deposition. In this case, deposition from solution may be a promising route; in ionic form, these molecules may even be soluble in water. In this contribution, we present and discuss results on the electrochemical deposition of viologen- and porphyrin molecules as well as their co-adsorption on chloride modified Cu(100) and Cu(111) single crystal electrode surfaces from aqueous acidic solutions. Using in situ techniques like cyclic voltametry and high resolution scanning tunneling microscopy, as well as ex-situ photoelectron spectroscopy data the highly ordered self-assembled organic layers are characterized with respect to their electrochemical behavior, lateral order and inner conformation as well as phase transitions thereof as a function of their redox-state and the symmetry of the substrate. As a result, detailed structure models are derived and are discussed in terms of the prevailing interactions.
机译:分子层的自组装已成为功能材料现代设计中的重要策略。然而,特别地,大的有机分子可能不再具有足够的挥发性以至于不能通过气相沉积来沉积。在这种情况下,从溶液中沉积可能是一个有前途的途径。这些离子形式的离子甚至可能溶于水。在这项贡献中,我们提出并讨论了紫精和卟啉分子的电化学沉积结果以及它们在酸性水溶液中氯化物改性的Cu(100)和Cu(111)单晶电极表面上的共吸附作用。使用循环伏安法和高分辨率扫描隧道显微镜等原位技术,以及非原位光电子能谱数据,可以对高序自组装有机层的电化学行为,侧向顺序和内部构象以及相变进行表征取决于它们的氧化还原状态和底物的对称性。结果,得出了详细的结构模型,并根据主要的相互作用进行了讨论。

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