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环丙烯亚基作为金表面上强大的卡宾锚定基团。

Cyclopropenylidenes as Strong Carbene Anchoring Groups on Au Surfaces.

作者信息

Doud Evan A, Starr Rachel L, Kladnik Gregor, Voevodin Anastasia, Montes Enrique, Arasu Narendra P, Zang Yaping, Zahl Percy, Morgante Alberto, Venkataraman Latha, Vázquez Héctor, Cvetko Dean, Roy Xavier

机构信息

CNR-IOM Laboratorio Nazionale TASC, Basovizza SS-14, km 163.5, 34149 Trieste, Italy.

Faculty of Mathematics and Physics, University of Ljubljana, Jadranska 19, 1000 Ljubljana, Slovenia.

出版信息

J Am Chem Soc. 2020 Nov 25;142(47):19902-19906. doi: 10.1021/jacs.0c10743. Epub 2020 Nov 11.

Abstract

The creation of stable molecular monolayers on metallic surfaces is a fundamental challenge of surface chemistry. N-Heterocyclic carbenes (NHCs) were recently shown to form self-assembled monolayers that are significantly more stable than the traditional thiols on Au system. Here we theoretically and experimentally demonstrate that the smallest cyclic carbene, cyclopropenylidene, binds even more strongly than NHCs to Au surfaces without altering the surface structure. We deposit bis(diisopropylamino)cyclopropenylidene (BAC) on Au(111) using the molecular adduct BAC-CO as a precursor and determine the structure, geometry, and behavior of the surface-bound molecules through high-resolution X-ray photoelectron spectroscopy, atomic force microscopy, and scanning tunneling microscopy. Our experiments are supported by density functional theory calculations of the molecular binding energy of BAC on Au(111) and its electronic structure. Our work is the first demonstration of surface modification with a stable carbene other than NHC; more broadly, it drives further exploration of various carbenes on metal surfaces.

摘要

在金属表面创建稳定的分子单层是表面化学的一项基本挑战。最近研究表明,N-杂环卡宾(NHCs)能形成自组装单层,其稳定性比金体系上的传统硫醇显著更高。在此,我们通过理论和实验证明,最小的环卡宾——环丙烯叉,与金表面的结合力比NHCs更强,且不会改变表面结构。我们使用分子加合物BAC-CO作为前体,将双(二异丙基氨基)环丙烯叉(BAC)沉积在Au(111)上,并通过高分辨率X射线光电子能谱、原子力显微镜和扫描隧道显微镜确定表面结合分子的结构、几何形状和行为。我们的实验得到了BAC在Au(111)上的分子结合能及其电子结构的密度泛函理论计算的支持。我们的工作首次证明了除NHC之外的稳定卡宾对表面的修饰作用;更广泛地说,它推动了对金属表面各种卡宾的进一步探索。

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