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通过调节分子-表面相互作用控制三蝶烯在Au(111)上的自组装

Steering Self-Assembly of Three-Dimensional Iptycenes on Au(111) by Tuning Molecule-Surface Interactions.

作者信息

Grossmann Lukas, Ringel Eva, Rastgoo-Lahrood Atena, King Benjamin T, Rosen Johanna, Heckl Wolfgang M, Opris Dorina, Björk Jonas, Lackinger Markus

机构信息

Deutsches Museum, Museumsinsel 1, 80538, Munich, Germany.

Department of Physics, Technische Universität München, James-Franck-Str. 1, 85748, Garching, Germany.

出版信息

Angew Chem Int Ed Engl. 2022 Jun 20;61(25):e202201044. doi: 10.1002/anie.202201044. Epub 2022 Apr 21.

Abstract

Self-assembly of three-dimensional molecules is scarcely studied on surfaces. Their modes of adsorption can exhibit far greater variability compared to (nearly) planar molecules that adsorb mostly flat on surfaces. This additional degree of freedom can have decisive consequences for the expression of intermolecular binding motifs, hence the formation of supramolecular structures. The determining molecule-surface interactions can be widely tuned, thereby providing a new powerful lever for crystal engineering in two dimensions. Here, we study the self-assembly of triptycene derivatives with anthracene blades on Au(111) by Scanning Tunneling Microscopy, Near Edge X-ray Absorption Fine Structure and Density Functional Theory. The impact of molecule-surface interactions was experimentally tested by comparing pristine with iodine-passivated Au(111) surfaces. Thereby, we observed a fundamental change of the adsorption mode that triggered self-assembly of an entirely different structure.

摘要

三维分子在表面的自组装很少被研究。与(几乎)平面分子相比,它们的吸附模式可能表现出更大的变异性,平面分子大多以平躺的方式吸附在表面。这种额外的自由度可能对分子间结合基序的表达产生决定性影响,进而影响超分子结构的形成。分子与表面之间的决定性相互作用可以在很大范围内调节,从而为二维晶体工程提供一个新的有力手段。在这里,我们通过扫描隧道显微镜、近边X射线吸收精细结构和密度泛函理论研究了带有蒽叶片的三蝶烯衍生物在Au(111)表面的自组装。通过将原始的Au(111)表面与碘钝化的Au(111)表面进行比较,对分子与表面相互作用的影响进行了实验测试。由此,我们观察到吸附模式发生了根本性变化,这种变化引发了完全不同结构的自组装。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12bf/9325367/f8897b0d26ff/ANIE-61-0-g001.jpg

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