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A computational study of the sub-monolayer growth of pentacene

机译:并五苯单层生长的计算研究

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A computational study of organic thin-film growth using a combination of ab initio based energy calculations and kinetic Monte Carlo (KMC) simulations is provided. A lattice-based KMC model is used in which binding energies determine the relative rates of diffusion of the molecules. This KMC approach is used to present "landscapes" or "maps" that illustrate the possible structural outcomes of growing a thin film of small organic molecules, represented as a two-site dimer, on a substrate in which the strength of organic-substrate interactions is allowed to vary. KMC provides a mesoscopic-scale view of sub-monolayer deposition of organic thin films on model substrates, mapped out as a function of the flux of depositing molecules and the temperature of the substrate. The morphology of the crystalline thin films is shown to be a strong function of the molecule-molecule and molecule-substrate interactions. A rich variety of maps is shown to occur in which the small organic molecules either stand up or lie down in a variety of different patterns depending on the nature of the binding to the surface. In this way, it is possible to suggest how to tailor the substrate or the small organic molecule in order to create a desired growth habit. In order to demonstrate how this set of allowable maps is reduced in the case where the set of energy barriers between substrate and organic molecule are reliably known, we have used Gaussian 98 calculations to establish binding energies for the weak van der Waals interactions between a) pairs of pentacene molecules as a function of orientation and b) pentacene and two substrates, silicon surfaces passivated with cyclopentene molecules and a crystalline model of silicon dioxide. The critical nucleation size and the mode of diffusion of this idealized two-site dimer model for pentacene molecules are found to be in good agreement with experimental data.
机译:提供了使用基于从头算的能量计算和动力学蒙特卡洛(KMC)模拟相结合的有机薄膜生长的计算研究。使用基于晶格的KMC模型,其中结合能确定分子的相对扩散速率。此KMC方法用于呈现“风景”或“图”,以说明在有机底物相互作用强度较高的底物上生长以两点二聚体表示的小有机分子薄膜的可能结构结果。允许改变。 KMC提供了有机薄膜在模型基板上的亚单层沉积的介观尺度视图,并根据沉积分子的流量和基板温度进行了绘制。晶体薄膜的形态显示出是分子-分子和分子-底物相互作用的强大功能。显示出丰富的图谱,其中小有机分子根据与表面结合的性质而以各种不同的模式立起或躺下。以此方式,可以建议如何修整底物或有机小分子以建立所需的生长习性。为了证明在可靠地了解底物和有机分子之间的能垒的情况下如何减少这组允许图,我们使用了高斯98计算来为a)之间的弱范德华相互作用建立结合能。对并五苯分子的取向和b)并五苯和两个衬底,被环戊烯分子钝化的硅表面和二氧化硅的晶体模型。发现并五苯分子的这种理想化的两中心二聚体模型的临界成核尺寸和扩散方式与实验数据非常吻合。

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