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首页> 外文期刊>The Journal of Chemical Physics >Clusters, molecular layers, and 3D crystals of water on Ni(111)
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Clusters, molecular layers, and 3D crystals of water on Ni(111)

机译:Ni(111)上水的团簇,分子层和3D晶体

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摘要

We examined the growth and stability of ice layers on Ni(111) up to similar to 7 molecular layers (ML) thick using scanning tunneling microscopy. At low coverage, films were comprised of similar to 1 nm wide two-dimensional (2D) clusters. Only above similar to 0.5 ML did patches of continuous 2D layers emerge, coexisting with the clusters until the first ML was complete. The structure of the continuous layer is clearly different from that of the 2D clusters. Subsequently, a second molecular layer grew on top of the first. 3D crystallites started to form only after this 2nd ML was complete. 2D clusters re-appeared when thicker films were partially evaporated, implying that these clusters represent the equilibrium configuration at low coverage. Binding energies and image simulations computed with density functional theory suggest that the 2D clusters are partially dissociated and surrounded by H adatoms. The complete 2D layer contains only intact water molecules because of the lack of favorable binding sites for H atoms. We propose molecular structures for the 2D layer that are composed of the same pentagon-heptagon binding motif and water density observed on Pt(111). The similarity of the water structures on Pt and Ni suggests a general prescription for generating low-energy configurations on close-packed metal substrates. (C) 2014 AIP Publishing LLC.
机译:我们使用扫描隧道显微镜检查了多达7个分子层(ML)厚的Ni(111)上冰层的生长和稳定性。在低覆盖率下,薄膜由类似于1 nm宽的二维(2D)簇组成。只有在类似于0.5 ML的上方,才会出现连续2D层的补丁,并与簇共存,直到第一个ML完成。连续层的结构明显不同于2D群集的结构。随后,第二分子层在第一分子层上生长。仅在完成第二个ML后才开始形成3D晶体。当厚膜部分蒸发时,二维团簇重新出现,这意味着这些团簇在低覆盖率下代表了平衡构型。结合能和利用密度泛函理论计算的图像模拟表明,二维团簇部分解离并被H原子包围。完整的2D层仅包含完整的水分子,因为缺少H原子的有利结合位点。我们提出了二维层的分子结构,该结构由相同的五边形-七边形结合基序和在Pt(111)上观察到的水密度组成。 Pt和Ni上水结构的相似性提出了在密堆积金属基材上产生低能构型的一般处方。 (C)2014 AIP Publishing LLC。

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