首页> 外文期刊>Bulletin of the Korean Chemical Society >Investigation of the Scanning Tunneling Microscopy Image, the Stacking Pattern and the Bias-voltage Dependent Structural Instability of 2,2'-Bipyridine Molecules Adsorbed on Au(111) in Terms of Electronic Structure Calculations
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Investigation of the Scanning Tunneling Microscopy Image, the Stacking Pattern and the Bias-voltage Dependent Structural Instability of 2,2'-Bipyridine Molecules Adsorbed on Au(111) in Terms of Electronic Structure Calculations

机译:电子结构计算研究2,2'-联吡啶分子吸附在Au(111)上的扫描隧道显微镜图像,堆积模式和依赖于偏压的结构不稳定性

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摘要

A self-assembled monolayer of 2,2'-bipyridine (22BPY) molecules on Au(111) underwent a structural phase transition when the polarity of a bias voltage was switched in scanning tunneling microscopy (STM) experiments. The nature of two bright spots representing each 22BPY molecule on Au(111) in the high-resolution STM images was identified by calculating the partial density plots for a monolayer of 22BPY molecules adsorbed on Au(111) using tight-binding electronic structure calculations. The stacking pattern of the chains of 22BPY molecules on Au(111) was explained by examining the intermolecular interactions between the 22BPY molecules based on first principles electronic structure calculations for a 22BPY dimer, (22BPY)2. The structural instability of the 22BPY molecule arrangement caused by a change in the bias voltage switch was investigated by estimating the adsorbate-surface interaction energy using a point-charge approximation for Au(111).
机译:当在扫描隧道显微镜(STM)实验中切换偏置电压的极性时,Au(111)上的2,2'-联吡啶(22BPY)分子的自组装单层经历了结构相变。高分辨率STM图像中代表Au(111)上每个22BPY分子的两个亮点的性质是通过使用紧密结合电子结构计算计算吸附在Au(111)上的22BPY分子单层的部分密度图来确定的。通过基于22BPY二聚体(22BPY)2的第一原理电子结构计算,检查22BPY分子之间的分子间相互作用,解释了Au(111)上22BPY分子链的堆积方式。通过使用Au(111)的点电荷近似估算被吸附物-表面的相互作用能,研究了由偏置电压开关的变化引起的22BPY分子排列的结构不稳定性。

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