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Thiolated gold nanowires: Metallic versus semiconducting

机译:硫代金纳米线:金属与半导体

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Tremendous research efforts have been spent on thiolated gold nanoparticles and self-assembled monolayers of thiolate (RS-) on gold, but thiolated gold nanowires have received almost no attention. Here we computationally design two such one-dimensional nanosystems by creating a linear chain of Au icosahedra, fused together by either vertex sharing or face sharing. Then neighboring Au icosahedra are bridged by five thiolate groups for the vertex-sharing model and three RS-Au-SR motifs for the face-sharing model. We show that the vertex-sharing thiolated gold nanowire can be made either semiconducting or metallic by tuning the charge, while the face-sharing one is always metallic. We explain this difference between the two nanowires by examining their band structures and invoking a previously proposed electron-count rule. Implications of our findings for previous experimentation of gold nanowires are discussed, and a potential way to make thiolated gold nanowires is proposed.
机译:已经对硫醇化的金纳米颗粒和金上硫醇盐(RS-)的自组装单分子层进行了大量研究工作,但是硫醇化的金纳米线几乎没有受到关注。在这里,我们通过创建金二十面体的线性链(通过顶点共享或面共享融合在一起)来计算设计两个这样的一维纳米系统。然后,将相邻的Au二十面体通过五个硫醇盐基团连接起来用于顶点共享模型,并将三个RS-Au-SR主题连接起来用于人脸共享模型。我们表明,通过调节电荷,可以将顶点共享的硫醇化金纳米线制成半导体或金属,而共享面部的金属线始终是金属。我们通过检查两个纳米线的能带结构并调用先前提出的电子计数规则来解释这种差异。讨论了我们的发现对金纳米线先前实验的意义,并提出了制备硫醇化金纳米线的潜在方法。

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