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基于第一性原理研究芳香族自组装单层在 Au(111)表面上的电子诱导交联。

First-principles investigation of electron-induced cross-linking of aromatic self-assembled monolayers on Au(111).

机构信息

Donostia International Physics Center (DIPC), Paseo Manuel de Lardizabal 4, San Sebastian 20018, Spain.

出版信息

Phys Chem Chem Phys. 2010 Feb 21;12(7):1578-84. doi: 10.1039/b919336g. Epub 2010 Jan 7.

DOI:10.1039/b919336g
PMID:20126772
Abstract

We have performed a density functional theory study of the possible layered geometries occurring after dehydrogenation of a self-assembled monolayer (SAM) of biphenyl-thiol molecules (BPTs) adsorbed on Au(111), as it has been experimentally observed for low energy electron irradiated SAMs of 4'-nitro-1,1'-biphenyl-thiol adsorbed on a Au(111) surface. [Eck et al., Advanced Materials 2000, 12, 805] Cross-link formation between the BPT molecules has been analyzed using different models with different degrees of complexity. We start by analyzing the bonding between biphenyl (BP) molecules in a lineal dimer and their characteristic vibration frequencies. Next, we consider the most stable cross-linked structures formed in an extended free-standing monolayer of fully dehydrogenated BP molecules. Finally, we analyze a more realistic model where the role of the Au(111) substrate and sulfur head groups is explicitly taken into account. In this more complex model, the dehydrogenated BPT molecules are found to interact covalently to spontaneously form "graphene-like" nanoflakes. We propose that these nanographenes provide plausible building-blocks for the structure of the carbon layers formed by electron irradiation of BPT-SAMs. In particular, it is quite tempting to visualize those structures as the result of the cross-link and entanglement of such graphene nanoflakes.

摘要

我们进行了密度泛函理论研究,研究了自组装的联苯硫醇分子(BPTs)单层膜在金(111)表面吸附后脱氢可能出现的层状结构,因为已经在实验中观察到低能电子辐照吸附在金(111)表面的 4'-硝基-1,1'-联苯硫醇的 SAM 的情况。[Eck 等人,《先进材料》2000 年,12 卷,805 页]使用不同复杂度的不同模型分析了 BPT 分子之间的交联形成。我们首先分析了线式二聚体中联苯(BP)分子之间的键合及其特征振动频率。接下来,我们考虑了在完全脱氢的 BP 分子的扩展自由单层中形成的最稳定的交联结构。最后,我们分析了一个更现实的模型,其中明确考虑了 Au(111) 衬底和硫头基团的作用。在这个更复杂的模型中,发现脱氢的 BPT 分子通过共价相互作用自发形成“类石墨烯”纳米薄片。我们提出这些纳米带可以作为 BPT-SAMs 电子辐照形成的碳层结构的合理构建块。特别是,将这些结构想象为这种石墨烯纳米带的交联和缠结的结果是非常诱人的。

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引用本文的文献

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