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首页> 外文期刊>Physical review, B >Structural investigations of Al5Co2(2(1)over-bar0) and (100) surfaces: Influence of bonding strength and annealing temperature on surface terminations
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Structural investigations of Al5Co2(2(1)over-bar0) and (100) surfaces: Influence of bonding strength and annealing temperature on surface terminations

机译:Al5Co2(2(1)over-bar0)和(100)表面的结构研究:粘接强度和退火温度对表面终端的影响

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Structural investigations of the (2 (1) over bar0) and (100) surfaces of Al5Co2 using experimental ultrahigh vacuum techniques and ab initio computational methods are presented in this work. Both surfaces are identified and show bulk terminations where only specific atoms remain. These atoms can be seen as truncated parts of chemically bonded atomic motifs which have been identified in the bulk in a previous work [M. Meier et al., Phys. Rev. B 91, 085414 (2015)]. Whereas the (2 (1) over bar0) surface presents a single termination, the structure of the (100) topmost layers is found to be highly dependent on the preparation conditions, especially on the annealing temperature. This behavior, also observed for the (001) surface studied previously, can be partly explained when considering the bonding strength of the truncated motif parts with the subsurface.
机译:本文使用实验超高真空技术和从头算的方法对Al5Co2的(2(1)在bar0)和(100)表面进行了结构研究。识别了两个表面,并显示了仅保留特定原子的本体终止。这些原子可以看作是化学键合的原子基序的截短部分,这些原子基序在先前的工作中已被大量鉴定[M. Meier等,Phys。版本B 91,085414(2015)。尽管bar0的(2(1))表面呈现单个终止,但是发现(100)最顶层的结构高度依赖于制备条件,尤其是退火温度。当考虑到截短的图案部分与亚表面的结合强度时,也可以部分解释这种行为(也针对先前研究的(001)表面观察到)。

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