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首页> 外文期刊>International Journal of Quantum Chemistry >Models for the Adsorption and Self-Assembly of Ethanol and 1-Decanethiol on Au(111) Surfaces.A Comparative Study by Computer Simulation
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Models for the Adsorption and Self-Assembly of Ethanol and 1-Decanethiol on Au(111) Surfaces.A Comparative Study by Computer Simulation

机译:乙醇和1-癸硫醇在Au(111)表面的吸附和自组装模型。计算机模拟的比较研究

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摘要

Results from computer simulations, based on different models to study theadsorption and self-assembly of the ethanol and 1-decanethiol on gold surfaces, Au(111), are presented. Canonical ensemble Monte Carlo simulations were performed at 298K using two different force fields. One from DFT calculations, where the gold electrode has an explicit structure (corrugated electrode), and the other representing an electrode, in which the structure is taken into account on an average way (flat electrode). The behavior of the ethanol adsorption on gold surfaces, with and without the 1-decanethiol presence, is analyzed. The introduction of molecular flexibility is also discussed. The relative surface density for the ethanol oxygen, adsorbed on gold, and the density profiles, in different conditions, show that the structure of the surface has a fundamental role on the way the adsorption takes place, not only on the preferential adsorption sites of the surface but also on the ethanol distribution over the electrodes. Potentials of mean force have also been calculated for the two surface models, giving the free energy barriers to the 1-decanethiol crossing of the solvent adsorption layers. The average tilt angle, obtained with a single thiol molecule in the simulation box, presents the values: 26 for the rigid molecule model and 74 ± 18 for the flexible one. These differences are analyzed.
机译:提出了基于不同模型的计算机模拟结果,以研究乙醇和1-癸硫醇在金表面Au(111)上的吸附和自组装。使用两个不同的力场在298K上进行了典型的合奏蒙特卡洛模拟。一种通过DFT计算得出,其中金电极具有明确的结构(波纹状电极),另一种代表电极,其中以平均方式考虑了该结构(扁平电极)。分析了在有和没有1-癸硫醇存在下,乙醇在金表面上的吸附行为。还讨论了分子柔韧性的引入。在不同条件下,吸附在金上的乙醇氧的相对表面密度以及密度分布图表明,表面结构对吸附的方式具有根本作用,而不仅是在金属的优先吸附位上。表面,而且乙醇在电极上的分布。还计算了两个表面模型的平均力势,从而为溶剂吸附层的1-癸硫醇交叉提供了自由能垒。在模拟框中使用单个硫醇分子获得的平均倾斜角表示以下值:刚性分子模型为26,柔性分子模型为74±18。分析这些差异。

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