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首页> 外文期刊>Journal of Physics. Condensed Matter >Self-assembly of Ni(II) porphine molecules on the Ag/Si(111)-(root 3 x root 3) R30 degrees surface studied by STM/STS and LEED
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Self-assembly of Ni(II) porphine molecules on the Ag/Si(111)-(root 3 x root 3) R30 degrees surface studied by STM/STS and LEED

机译:通过STM / STS和LEED研究了Ni(II)卟啉分子在Ag / Si(111)-(根3 x根3)R30度表面上的自组装

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摘要

The room-temperature growth and ordering of (porphyrinato) nickel(II) (nickel(II) porphine, NiP) molecules on the Ag/Si(111)-(root 3 x root 3) R30 degrees surface have been investigated using scanning tunnelling microscopy/spectroscopy (STM/STS) and low-energy electron diffraction (LEED). The results indicate a well-ordered molecular layer in which the porphyrin molecules have a flat orientation with the molecular plane lying parallel to the substrate and forming a hexagonal overlayer on the surface. STM and LEED data obtained from one monolayer (ML) of the NiP on the Ag/Si(111)-(root 3 x root 3) R30 degrees surface show the formation of two well-ordered mirror domains, each rotated either clockwise or counterclockwise by 7 degrees with respect to the substrate. A hexagonal Moire pattern was observed for the NiP overlayer due to long-range variation in the overlayer-substrate distance. It was found that the existence of such azimuthal rotation and the Moire pattern are caused by a lattice mismatch between the substrate and the molecular overlayer, and a corresponding model is proposed. The NiP molecules forming the second monolayer maintain the same planarity and hexagonal ordering as the first molecular layer. Scanning tunnelling spectroscopy data obtained from the NiP overlayer on the Ag/Si(111)-(root 3 x root 3) R30 degrees surface show good agreement with density functional theory calculations.
机译:使用扫描隧道效应研究了在Ag / Si(111)-(根3 x根3)R30度表面上(卟啉)镍(II)(镍(II)卟啉,NiP)分子的室温生长和有序性显微镜/光谱学(STM / STS)和低能电子衍射(LEED)。结果表明,其中卟啉分子具有平坦取向的分子层与分子平面平行于基底并在表面上形成六边形覆盖层,分子层排列整齐。从Ag / Si(111)-(根3 x根3)R30度表面上的NiP的一个单层(ML)获得的STM和LEED数据显示了两个秩序井然的镜域的形成,每个镜域都顺时针或逆时针旋转相对于基板倾斜7度。由于覆盖层-基底距离的长期变化,NiP覆盖层观察到六边形的莫尔图案。发现这种方位角旋转和莫尔条纹的存在是由于基板和分子外层之间的晶格失配引起的,并提出了相应的模型。形成第二单层的NiP分子保持与第一分子层相同的平面度和六边形有序。从Ag / Si(111)-(根3 x根3)R30度表面上的NiP覆盖层获得的扫描隧道光谱数据与密度泛函理论计算结果显示出良好的一致性。

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