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STRUCTURE AND CHEMISTRY OF THE YB66(100) SURFACE

机译:YB66(100)表面的结构与化学

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The structure of the clean YB66(100) surface was studied with X-ray photoelectron spectroscopy, low-energy electron diffraction (LEED), and scanning tunneling microscopy (STM). A clean, well-ordered surface can be prepared by Ar ion bombardment followed by annealing to 1200 degrees C, The fact that heating does not lead to the preferential loss of boron or yttrium indicates that the material evaporates congruently in vacuum, Although the bulk structure of YB66 is quite complex with over 1600 atoms per unit cell, both LEED and STM reveal that the surface structure has long-range two-dimensional periodicity described by a simple square lattice, The surface lattice constant determined by LEED is 21+/-3 Angstrom, whereas the bulk value is 23.44 Angstrom. Large scale images obtained with STM reveal that the surface consists of flat (100) terraces separated by steps 11.7 Angstrom (half unit cell) in height, Smaller scale STM images reveal a 11.7 Angstrom square grid of objects, These objects are identified as icosahedral clusters of 156 boron atoms, In its reactivity toward oxygen, the surface shows behavior similar to that reported for a beta-rhombohedral boron (111) surface. (C) 1997 Academic Press. [References: 16]
机译:用X射线光电子能谱,低能电子衍射(LEED)和扫描隧道显微镜(STM)研究了干净的YB66(100)表面的结构。可以通过Ar离子轰击然后退火至1200摄氏度来制备干净整齐的表面,事实是加热不会导致硼或钇的优先损失,这表明材料在真空中会蒸发,尽管整体结构YB66的分子非常复杂,每个晶胞超过1600个原子,LEED和STM均显示表面结构具有由简单方格描述的远距离二维周期性,LEED确定的表面晶格常数为21 +/- 3埃,而体积值为23.44埃。用STM获得的大型图像显示表面由高度(11.7埃)分隔的平坦(100)阶地组成,较小的STM图像显示物体的11.7埃正方形网格,这些物体被识别为二​​十面体簇156个硼原子中的一个,在与氧气的反应性方面,该表面的行为与报告的β-菱形六面体硼(111)表面相似。 (C)1997学术出版社。 [参考:16]

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