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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Adsorption of metadiiodobenzene on Cu(110): A theoretical study
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Adsorption of metadiiodobenzene on Cu(110): A theoretical study

机译:偏二碘代苯在Cu(110)上的吸附:理论研究

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摘要

In this work, we have computationally modeled the adsorption of 1,3-diiodobenzene (meta-diiodobenzene or m-DIB) on Cu(1 1 0) by means of density functional theory including van der Waals interaction using Grimme's method. We have compared the adsorption energies and structures of 23 possible configurations of the physisorbed molecule. Furthermore, we have simulated STM images for the four most stable configurations using the Tersoff-Hamann approach at different bias voltages. We find that all the adsorption orientations have comparable energy, and we discuss the relative probabilities of experimental observation. We find that the adsorption induces small distortions in the molecular structure of the adsorbate and in some cases an adsorption-induced symmetry breakdown occurs. We also find evidence that the most stable arrangement is actually a bistable system with interesting symmetry properties.
机译:在这项工作中,我们使用密度泛函理论包括范德华相互作用,使用Grimme方法对Cu(1 1 0)上1,3-二碘苯(间二碘苯或m-DIB)的吸附进行了计算建模。我们比较了物理吸附分子的23种可能构型的吸附能和结构。此外,我们使用Tersoff-Hamann方法在不同偏置电压下对四种最稳定配置的STM图像进行了仿真。我们发现所有的吸附方向都具有可比的能量,并且我们讨论了实验观察的相对概率。我们发现,吸附在被吸附物的分子结构中引起小的扭曲,并且在某些情况下,发生了吸附引起的对称破坏。我们还发现有证据表明,最稳定的排列实际上是具有有趣的对称性的双稳态系统。

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