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Binding and Diffusion of Al Adatoms and Dimers on the Si(100)-2 × 1 Reconstructed Surface: A Hybrid QM/MM Embedded Cluster Study

机译:Al Adatoms和Dimers对Si(100)-2×1重建表面的结合和扩散:混合QM / MM嵌入式群集研究

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摘要

When group III metals are deposited onto the Si(100)-2 × 1 reconstructed surface they are observed to self-assemble into chains of atoms that are one atom high by one atom wide. To better understand this one-dimensional island growth, ab initio electronic structure calculations on the structures of Al atoms on silicon clusters have been performed. Natural orbital occupation numbers show that these systems display significant diradical character, suggesting that a multireference method is needed. A multiconfiguration self-consistent field (MCSCF) calculation with a 6-31G(d) basis set and effective core potentials was used to optimize geometries. The surface integrated molecular orbital molecular mechanics embedded cluster method was used to take the surface chemistry into account, as well as the structure of an extended surface region. Potential energy surfaces for binding of Al adatoms and Al−Al dimers on the surface were determined, and the former was used to obtain a preliminary assessment of the surface diffusion of adatoms. Hessians were calculated to characterize stationary points, and improved treatment of dynamic electron correlation was accomplished using multireference second order perturbation theory (MRMP2) single-point energy calculations. Results from the MRMP2//MCSCF embedded cluster calculations are compared with those from QM-only cluster calculations, embedded cluster unrestricted density functional theory calculations, and previous Car−Parrinello DFT studies.
机译:当第III族金属沉积到所述Si(100)-2×它们观察到1个重构的表面自组装成由一个原子宽一个原子高原子的链。为了更好地理解这个一维岛状生长,从头上Al原子的硅团簇的结构电子结构计算已经执行。自然轨道占据数表明,这些系统显示显著双自由基的性格,这表明需要一个多参考方法。用6-31G(d)基组和有效芯电位阿多组态自洽场(MCSCF)计算用于优化的几何形状。嵌入式集群方法的表面一体化分子轨道分子力学来采取表面化学考虑在内,以及延伸表面区域的结构。对于铝吸附原子和在表面上的Al-Al系的二聚体结合势能面进行了测定,且前者用于获得吸附原子的表面扩散的初步评估。粗麻布,计算表征驻点,和改进的动态电子相关的治疗,使用多参考二阶微扰理论(MRMP2)的单点能量计算来完成的。从MRMP2 //结果MCSCF嵌入式集群计算与那些从QM-仅集群计算,嵌入式集群不受限制的密度泛函理论计算比较,以前的汽车,帕里内洛DFT研究。

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