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首页> 外文期刊>Journal of physical chemistry letters >Molecular Self-Assembly on Two-Dimensional Atomic Crystals: Insights from Molecular Dynamics Simulations
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Molecular Self-Assembly on Two-Dimensional Atomic Crystals: Insights from Molecular Dynamics Simulations

机译:二维原子晶体上的分子自组装:分子动力学模拟的见解。

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van der Waals (vdW) epitaxy of ultrathin organic films on two-dimensional (2D) atomic crystals has become a sovereign area because of their unique advantages in organic electronic devices. However, the dynamic mechanism of the self-assembly remains elusive. Here, we visualize the nanoscale self-assembly of organic molecules on graphene and boron nitride monolayer from a disordered state to a 2D lattice via molecular dynamics simulation for the first time. It is revealed that the assembly toward 2D ordered structures is essentially the minimization of the molecule-molecule interaction, that is, the vdW interaction in nonpolar systems and the vdW and Coulomb interactions in polar systems that are the decisive factors for the formation of the 2D ordering. The role of the substrate is mainly governing the array orientation of the adsorbates. The mechanisms unveiled here are generally applicable to a broad class of organic thin films via vdW epitaxy.
机译:二维(2D)原子晶体上的超薄有机膜的范德华(vdW)外延技术已经成为主要领域,因为它们在有机电子设备中具有独特的优势。但是,自组装的动力学机制仍然难以捉摸。在这里,我们首次通过分子动力学模拟可视化了石墨烯和氮化硼单层上有机分子的纳米级自组装,从无序状态到二维晶格。揭示了向2D有序结构的组装本质上是分子-分子相互作用的最小化,即非极性系统中的vdW相互作用以及极性系统中的vdW和库仑相互作用是形成2D的决定性因素。订购。基质的作用主要是控制被吸附物的排列方向。通过vdW外延技术,此处揭示的机制通常适用于多种有机薄膜。

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