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利用 STM 和 LEED 研究 Ni(II)二苯并卟啉单层在 Ag(111)和 Ag/Si(111)上的生长和有序化。

Growth and ordering of Ni(II) diphenylporphyrin monolayers on Ag(111) and Ag/Si(111) studied by STM and LEED.

机构信息

Centre for Research on Adaptive Nanostructures and Nanodevices (CRANN), School of Physics, Trinity College Dublin, Dublin, Ireland.

出版信息

J Phys Condens Matter. 2012 Feb 1;24(4):045005. doi: 10.1088/0953-8984/24/4/045005.

Abstract

The room temperature self-assembly and ordering of (5,15-diphenylporphyrinato)nickel(II) (NiDPP) on the Ag(111) and Ag/Si(111)-(√3 × √3)R30° surfaces have been investigated using scanning tunnelling microscopy and low-energy electron diffraction. The self-assembled structures and lattice parameters of the NiDPP monolayer are shown to be extremely dependent on the reactivity of the substrate, and probable molecular binding sites are proposed. The NiDPP overlayer on Ag(111) grows from the substrate step edges, which results in a single-domain structure. This close-packed structure has an oblique unit cell and consists of molecular rows. The molecules in adjacent rows are rotated by approximately 17° with respect to each other. In turn, the NiDPP molecules form three equivalent domains on the Ag/Si(111)-(√3 × √3)R30° surface, which follow the three-fold symmetry of the substrate. The molecules adopt one of three equivalent orientations on the surface, acting as nucleation sites for these domains, due to the stronger molecule-substrate interaction compared to the case of the Ag(111). The results are explained in terms of the substrate reactivity and the lattice mismatch between the substrate and the molecular overlayer.

摘要

(5,15-二苯基卟啉)镍(II)(NiDPP)在 Ag(111)和 Ag/Si(111)-(√3×√3)R30°表面上的室温自组装和有序化已通过扫描隧道显微镜和低能电子衍射进行了研究。NiDPP 单层的自组装结构和晶格参数被证明非常依赖于基底的反应性,并提出了可能的分子结合位点。NiDPP 覆盖层在 Ag(111)上从基底台阶边缘生长,导致形成单畴结构。这种密堆积结构具有斜交的单位胞,由分子行组成。相邻行中的分子彼此旋转约 17°。相反,NiDPP 分子在 Ag/Si(111)-(√3×√3)R30°表面上形成三个等效的畴,这些畴遵循基底的三重对称性。由于与 Ag(111)相比,分子与基底的相互作用更强,因此分子在表面上采用三种等效取向之一,充当这些畴的成核位点。结果根据基底的反应性和基底与分子覆盖层之间的晶格失配来解释。

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