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Lepidocrocite-like structure of the TiO2 monolayer grown on Ag(100)

机译:在Ag(100)上生长的TiO2单层的似似铁云母的结构

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Titanium oxide ultrathin films were grown on Ag(100) by evaporation of titanium in an O2 atmosphere. The growth of the oxide films was monitored by means of XPS. The Ti2p XPS spectra indicate the formation of films with a TiO2 stoichiometry in the whole range of coverages studied here. The STM results show that titania films appear to grow as islands of uniform thickness up to the completion of the first layer. Up to the formation of one complete monolayer, a (5 x 1) LEED pattern is observed. This pattern can be interpreted as a coincidence mesh and the lattice parameters of the oxide layer are very close to those of TiO2 films with a lepidocrocite-like structure. However, the STM images show a long-range coincidence between the periodicity of the oxide film and that of the substrate along the short side of the oxide unit cell revealing that this lattice parameter is not exactly equal to that of the substrate. Above the monolayer coverage, additional spots become visible in the LEED pattern which can be interpreted in terms of the unit cell of rutile (110). The structural determination was carried out for the monolayer of titania by means of XPD and LEED intensity analysis. The results of these investigations demonstrate that the titania monolayer has a lepidocrocite-like structure. The DFT calculations carried out for the titania monolayer show the higher stability of the lepidocrocite structure with respect to other structures derived from crystallographic planes of bulk TiO2 phases. Moreover, these calculations allow us to determine the oxide-substrate interface energy as well as to clarify the effect of the strain on the stability of the oxide layer.
机译:通过在O2气氛中蒸发钛,在Ag(100)上生长氧化钛超薄膜。借助于XPS监测氧化物膜的生长。 Ti2p XPS光谱表明在本文研究的整个覆盖范围内,具有TiO2化学计量的薄膜形成。 STM结果表明,二氧化钛薄膜似乎以均匀厚度的岛状生长,直到第一层完成为止。直到形成一个完整的单层,才观察到(5 x 1)LEED模式。该图案可以解释为重合网格,并且氧化物层的晶格参数非常类似于具有似铁云母结构的TiO2薄膜的晶格参数。但是,STM图像显示了沿薄膜晶胞的短边的氧化膜和衬底的周期性之间的长距离重合,这表明该晶格参数不完全等于衬底的晶格参数。在单层覆盖上方,在LEED模式中可以看到其他斑点,可以用金红石(110)的晶胞来解释。通过XPD和LEED强度分析对二氧化钛单层进行结构测定。这些研究的结果表明,二氧化钛单层具有类似纤铁矿的结构。对二氧化钛单层进行的DFT计算显示,相对于从本体TiO2相的晶体学平面得出的其他结构,软铁锰矿结构具有更高的稳定性。此外,这些计算使我们能够确定氧化物-基底界面的能量,并阐明应变对氧化物层稳定性的影响。

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