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Supported metal clusters and cluster-substrate interaction studied by scanning tunneling microscopy.

机译:通过扫描隧道显微镜研究了支持的金属团簇和团簇-底物的相互作用。

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This PhD dissertation is concerned with an experimental study of supported metal clusters and cluster-substrate interaction. The geometric and electronic structures of platinum and cobalt clusters on graphite, the effects of clusters on the graphite substrate, and the influences from the substrate to clusters were investigated by scanning tunneling microscopy.;A topographic study of adatoms and small clusters of platinum and cobalt on highly-oriented pyrolytic graphite was performed both in air and in ultra-high vacuum. The samples were prepared by vapor deposition on the graphite surface. Stable images of adatoms and small clusters on graphite were obtained with atomic resolution showing their atomic structures. Taking the graphite lattice as reference, the adsorption sites of adatoms and clusters on the surface as well as the bond lengths and bond angles of clusters were determined.;Various superstructures on graphite were found near the adsorbed clusters, or generally near defects. The superstructures are localized in small areas near the clusters and decay within a distance of 2-5 nm into the graphite lattice. Detailed analyses show that they were due to periodic charge-density modulations superimposed onto the graphite lattice. The different periodic modulations have the same period of 1.5a (a = 0.245 nm, is the lattice constant of graphite) and exist in three possible directions, each rotated 30;Among many graphite substrates being studied, anomalous giant lattices were observed on three of the samples. They exhibited hexagonal symmetry with lattice constants of 1.7 nm, 2.8 nm, 3.8 nm and 6.6 nm. Atomic resolution of graphite was obtained simultaneously. By introducing small rotations of the top graphite layer relative to the underlying single crystal, a complete description is developed to account for all the features displayed by the STM images. In addition to the giant and atomic lattices, a supergiant lattice was observed. Cobalt particles on the surface were also imaged and were found on the top sites of the giant lattice.
机译:本博士论文涉及支持金属团簇和团簇-基底相互作用的实验研究。通过扫描隧道显微镜研究了石墨上的铂和钴簇的几何结构和电子结构,簇对石墨基体的影响以及基体对簇的影响。在空气和超高真空下均进行了高取向热解石墨的制备。通过气相沉积在石墨表面上制备样品。获得了在石墨上的原子和小团簇的稳定图像,其原子分辨率显示了它们的原子结构。以石墨晶格为参考,确定了原子和团簇在表面的吸附位置,以及团簇的键长和键合角。;在吸附团簇附近或一般在缺陷附近发现了各种石墨上层结构。上部结构位于簇附近的小区域,并在2-5 nm的距离内衰减进入石墨晶格。详细的分析表明,这是由于周期性电荷密度调制叠加在石墨晶格上引起的。不同的周期调制具有相同的1.5a周期(a = 0.245 nm,是石墨的晶格常数),并以三个可能的方向存在,每个方向旋转30;在研究的许多石墨衬底中,在三个石墨衬底上观察到了异常的巨型晶格。样本。它们表现出六方对称性,其晶格常数为1.7 nm,2.8 nm,3.8 nm和6.6 nm。同时获得了石墨的原子分辨率。通过引入顶部石墨层相对于下面的单晶的微小旋转,可以开发出完整的描述来说明STM图像显示的所有特征。除了巨型和原子晶格外,还观察到了超大晶格。还对表面上的钴颗粒进行了成像,并在巨型晶格的顶部发现了钴颗粒。

著录项

  • 作者

    Xhie, Jie.;

  • 作者单位

    University of Hawai'i at Manoa.;

  • 授予单位 University of Hawai'i at Manoa.;
  • 学科 Condensed matter physics.;Materials science.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 93 p.
  • 总页数 93
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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