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巴基碗的表面氢化:从弯曲的芳香分子到平面非凯库勒芳香烃

On-Surface Hydrogenation of Buckybowls: From Curved Aromatic Molecules to Planar Non-Kekulé Aromatic Hydrocarbons.

作者信息

Wäckerlin Christian, Gallardo Aurelio, Mairena Anaïs, Baljozović Miloš, Cahlík Aleš, Antalík Andrej, Brabec Jiří, Veis Libor, Nachtigallová Dana, Jelínek Pavel, Ernst Karl-Heinz

机构信息

Surface Science and Coating Technologies, Empa, Swiss Federal Laboratories for Materials Science and Technology, Überlandstrasse 129, 8600 Dübendorf, Switzerland.

Institute of Physics of the Czech Academy of Sciences, Cukrovarnická 10, 162 00 Praha 6, Czech Republic.

出版信息

ACS Nano. 2020 Dec 22;14(12):16735-16742. doi: 10.1021/acsnano.0c04488. Epub 2020 Jul 24.

Abstract

Functionalization of surfaces with derivatives of Buckminsterfullerene fragment molecules seems to be a promising approach toward bottom-up fabrication of carbon nanotube modified electrode surfaces. The modification of a Cu(100) surface with molecules of the buckybowl pentaindenocorannulene has been studied by means of scanning tunneling microscopy, carbon monoxide-modified noncontact atomic force microscopy, time-of-flight secondary mass spectrometry, and quantum chemical calculations. Two different adsorbate modes are identified, in which the majority is oriented such that the bowl cavity points away from the surface and the convex side is partially immersed into a four-atom vacancy in the Cu(100) surface. A minority is oriented such that the convex side points away from the surface with the five benzo tabs oriented basically parallel to the surface. Thermal annealing leads to hydrogenation and planarization of the molecules in two steps under specific C-C bond cleavage. The benzo tabs of the convex side up species serve as a hydrogen source. The final product has an open-shell electron structure that is quenched on the surface.

摘要

用巴克敏斯特富勒烯片段分子的衍生物对表面进行功能化处理,似乎是一种自下而上制备碳纳米管修饰电极表面的有前途的方法。通过扫描隧道显微镜、一氧化碳修饰的非接触原子力显微镜、飞行时间二次质谱和量子化学计算,研究了用巴基碗五茚并蔻分子对Cu(100)表面的修饰。确定了两种不同的吸附质模式,其中大多数的取向是碗状空腔远离表面,凸面部分浸入Cu(100)表面的四原子空位中。少数的取向是凸面远离表面,五个苯环基本上与表面平行。热退火在特定的C-C键断裂下分两步导致分子氢化和平坦化。凸面朝上物种的苯环作为氢源。最终产物具有在表面淬灭的开壳电子结构。

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