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Properties of the gold–sulphur interface: from self-assembled monolayers to clusters

机译:金-硫界面的性质:从自组装单分子层到团簇

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摘要

The gold–sulphur interface of self-assembled monolayers (SAMs) was extensively studied some time ago. More recently tremendous progress has been made in the preparation and characterization of thiolate-protected gold clusters. In this feature article we address different properties of the two systems such as their structure, the mobility of the thiolates on the surface and other dynamical aspects, the chirality of the structures and characteristics related to it and their vibrational properties. SAMs and clusters are in the focus of different communities that typically use different experimental approaches to study the respective systems. However, it seems that the nature of the Au–S interfaces in the two cases is quite similar. Recent single crystal X-ray structures of thiolate-protected gold clusters reveal staple motifs characterized by gold ad-atoms sandwiched between two sulphur atoms. This finding contradicts older work on SAMs. However, newer studies on SAMs also reveal ad-atoms. Whether this finding can be generalized remains to be shown. In any case, more and more studies highlight the dynamic nature of the Au–S interface, both on flat surfaces and in clusters. At temperatures slightly above ambient thiolates migrate on the gold surface and on clusters. Evidence for desorption of thiolates at room temperature, at least under certain conditions, has been demonstrated for both systems. The adsorbed thiolate can lead to chirality at different lengths scales, which has been shown both on surfaces and for clusters. Chirality emerges from the organization of the thiolates as well as locally at the molecular level. Chirality can also be transferred from a chiral surface to an adsorbate, as evidenced by vibrational spectroscopy.
机译:自组装单分子膜(SAMs)的金-硫界面已在一段时间前得到了广泛的研究。最近,在硫醇盐保护的金团簇的制备和表征方面取得了巨大的进步。在这篇专题文章中,我们讨论了两个系统的不同特性,例如它们的结构,表面上硫醇盐的迁移性和其他动力学方面,结构的手性和与之相关的特性以及它们的振动特性。 SAM和集群是不同社区的关注重点,这些社区通常使用不同的实验方法来研究各自的系统。但是,在两种情况下,Au–S界面的性质似乎非常相似。硫醇盐保护的金簇的最新单晶X射线结构揭示了主要的基序,其特征是金原子吸附在两个硫原子之间。这一发现与有关SAM的较早工作相矛盾。但是,有关SAM的最新研究也揭示了原子。这一发现是否可以推广尚待证明。无论如何,越来越多的研究强调了Au-S界面在平面和簇上的动态特性。在略高于环境温度的温度下,硫醇盐会在金表面和簇上迁移。两种系统均已证明至少在某些条件下在室温下硫醇盐解吸的证据。吸附的硫醇盐可导致不同长度尺度的手性,这在表面和簇上均已显示。手性来自硫醇盐的组织以及在分子水平上的局部性。如振动光谱所证明的,手性也可以从手性表面转移至被吸附物。

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    Buergi, Thomas;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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