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Study on Formation Process and Models of Linear Fe Cluster Structure on a Si(111)-7 × 7-CH3OH Surface

机译:Si(111)-7×7-CH3OH表面线性Fe团簇结构的形成过程和模型研究

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摘要

STM results showed that Fe atoms were deposited on a Si(111)-7 × 7 reconstructed surface, which was saturated with CH3OH molecules. Fe atomic linear structure was composed of stable clusters and in-situ observed by the scanning tunneling microscopy (STM). The aim to improve its application of magnetic memory material, both formation process and models, has been explored in this paper. By combining surface images and mass spectrometer data, an intermediate layer model was established. In terms of thermal stability, the most favorable adsorption sites of CH3OH were further explored. After that, Fe atoms were deposited on the Si(111)-7 × 7-CH3OH surface, forming a linear cluster structure. On the one hand, a new Fe cluster model was put forward in this paper, which was established with height measurement and 3D surface display technology. This model is also affected by the evaporation temperature, which can be consistent with the atomic stacking pattern of face centered cubic structures. On the other hand, the slight height change suggested the stability of linear structures. Even in the condition of thin air introduction, Fe cluster showed a good performance, which suggested the possibility of magnetic memory application in the future. These investigations are believed to have, to a certain extent, increased the probability of forming Fe linear clusters on the surface of silicon substrate, especially according to the models and surface technology we adjusted.
机译:STM结果表明,Fe原子沉积在被CH3OH分子饱和的Si(111)-7×7重建表面上。铁原子线性结构由稳定的团簇组成,并通过扫描隧道显微镜(STM)进行原位观察。本文探讨了提高磁存储材料应用的目的,包括形成过程和模型。通过结合表面图像和质谱仪数据,建立了中间层模型。在热稳定性方面,进一步探索了CH3OH的最佳吸附位。之后,Fe原子沉积在Si(111)-7×7-CH3OH表面上,形成线性簇结构。一方面,本文提出了一种新的铁团簇模型,该模型是通过高度测量和3D表面显示技术建立的。该模型还受蒸发温度的影响,蒸发温度可能与面心立方结构的原子堆积模式一致。另一方面,轻微的高度变化表明线性结构的稳定性。即使在稀薄的空气引入条件下,Fe团簇也表现出良好的性能,这表明将来有可能应用磁存储器。相信这些研究在一定程度上增加了在硅衬底表面上形成Fe线性簇的可能性,特别是根据我们调整的模型和表面技术。

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