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硼恶嗪-金界面的电子特性:超快电荷离域的证据。

Electronic properties of the boroxine-gold interface: evidence of ultra-fast charge delocalization.

作者信息

Toffoli Daniele, Stredansky Matus, Feng Zhijing, Balducci Gabriele, Furlan Sara, Stener Mauro, Ustunel Hande, Cvetko Dean, Kladnik Gregor, Morgante Alberto, Verdini Alberto, Dri Carlo, Comelli Giovanni, Fronzoni Giovanna, Cossaro Albano

机构信息

Department of Chemical and Pharmaceutical Sciences , University of Trieste , via L. Giorgieri 1 , 34127 , Trieste , Italy . Email:

Department of Physics , University of Trieste , via A. Valerio 2 , 34127 , Trieste , Italy.

出版信息

Chem Sci. 2017 May 1;8(5):3789-3798. doi: 10.1039/c6sc05632f. Epub 2017 Mar 8.

Abstract

We performed a combined experimental and theoretical study of the assembly of phenylboronic acid on the Au(111) surface, which is found to lead to the formation of triphenylboroxines by spontaneous condensation of trimers of molecules. The interface between the boroxine group and the gold surface has been characterized in terms of its electronic properties, revealing the existence of an ultra-fast charge delocalization channel in the proximity of the oxygen atoms of the heterocyclic group. More specifically, the DFT calculations show the presence of an unoccupied electronic state localized on both the oxygen atoms of the adsorbed triphenylboroxine and the gold atoms of the topmost layer. By means of resonant Auger electron spectroscopy, we demonstrate that this interface state represents an ultra-fast charge delocalization channel. Boroxine groups are among the most widely adopted building blocks in the synthesis of covalent organic frameworks on surfaces. Our findings indicate that such systems, typically employed as templates for the growth of organic films, can also act as active interlayers that provide an efficient electronic transport channel bridging the inorganic substrate and organic overlayer.

摘要

我们对苯基硼酸在Au(111)表面的组装进行了实验与理论相结合的研究,发现其通过分子三聚体的自发缩合形成三苯基硼氧六环。硼氧六环基团与金表面之间的界面已根据其电子性质进行了表征,揭示了在杂环基团氧原子附近存在超快速电荷离域通道。更具体地说,密度泛函理论计算表明,在吸附的三苯基硼氧六环的氧原子和最顶层的金原子上均存在未占据的电子态。通过共振俄歇电子能谱,我们证明了这种界面态代表一个超快速电荷离域通道。硼氧六环基团是表面共价有机框架合成中应用最广泛的结构单元之一。我们的研究结果表明,这类通常用作有机薄膜生长模板的体系,也可以作为活性中间层,提供一个连接无机基底和有机覆盖层的高效电子传输通道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d47d/5436552/431bb1632366/c6sc05632f-f1.jpg

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