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首页> 外文期刊>The Journal of Chemical Physics >Submolecular imaging of chloronitrobenzene isomers on Cu(111)
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Submolecular imaging of chloronitrobenzene isomers on Cu(111)

机译:Cu(111)上氯硝基苯异构体的亚分子成像

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摘要

We compare computer simulations to experimental scanning tunneling microscopy (STM) images of chloronitrobenzene molecules on a Cu(111) surface. The experiments show that adsorption induced isomerization of the molecules takes place on the surface. Furthermore, not only the submolecular features can be seen in the STM images, but different isomers can also be recognized. The Todorov-Pendry approach to tunneling produces simulated STM images which are in good accordance with the experiments. Alongside with STM simulations in a tight-binding basis, ab initio calculations are performed in order to analyze the symmetry of relevant molecular orbitals and to consider the nature of tunneling channels. Our calculations show that while the orbitals delocalized to the phenyl ring create a relatively transparent tunneling channel, they also almost isolate the orbitals of the substitute groups at energies which are relevant in STM experiments. These features of the electronic structure are the key ingredients of the accurate submolecular observations.
机译:我们将计算机模拟与Cu(111)表面上的氯硝基苯分子的实验扫描隧道显微镜(STM)图像进行比较。实验表明,吸附诱导的分子异构化发生在表面上。此外,不仅可以在STM图像中看到亚分子特征,而且还可以识别出不同的异构体。使用Todorov-Pendry进行隧穿的方法可生成模拟STM图像,该图像与实验非常吻合。除了在紧密绑定的基础上进行STM模拟外,还进行了从头计算,以分析相关分子轨道的对称性并考虑隧道通道的性质。我们的计算表明,虽然离域至苯环的轨道形成了相对透明的隧穿通道,但它们也几乎以STM实验中相关的能量隔离了取代基的轨道。电子结构的这些特征是准确进行亚分子观测的关键要素。

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