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An investigation of the internal temperature dependence of Pd-Pt cluster beam deposition: A molecular dynamics study

机译:Pd-Pt团簇束沉积的内部温度依赖性研究:分子动力学研究

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We investigated the internal temperature dependence of the Pd_(1-a)Pt_a cluster beam deposition in the present study via the molecular dynamics simulations of soft-landing. By analysis of the velocity distribution and diffusion coefficient of the bimetallic cluster, Pd atoms with better mobility improved the diffusibility of Pt atoms. The radial composition distribution showed that a Pt-core/Pd-shell structure of the cluster formed at high internal temperatures through migrations of the Pd atoms from inner to surface shells. In the soft-landing process, the diffusing and epitaxial behaviors of the deposited clusters mainly depended on the internal temperature because the incident energy of the cluster was very small. By depositing clusters at high internal temperatures, we obtained a thin film of good epitaxial growth as the energetic cluster impact. Furthermore, nonepitaxial configurations such as scattered nonepitaxial atoms, misoriented particles, and grain boundaries of (1 1 1) planes were produced in the growth of the cluster-assembled film. As the size of the incident cluster increased, the internal temperature of the cluster needed for better interfacial diffusion and contact epitaxy on the substrate also rose.
机译:我们通过软着陆的分子动力学模拟研究了本研究中Pd_(1-a)Pt_a簇束沉积的内部温度依赖性。通过分析双金属团簇的速度分布和扩散系数,具有更好迁移率的Pd原子提高了Pt原子的扩散性。径向组成分布表明,团簇的Pt核/ Pd壳结构是在较高的内部温度下通过Pd原子从内壳向表面壳的迁移而形成的。在软着陆过程中,沉积团簇的扩散和外延行为主要取决于内部温度,因为团簇的入射能量非常小。通过在较高的内部温度下沉积团簇,我们获得了良好的外延生长薄膜,这是高能团簇的影响。此外,在簇组装膜的生长中产生了非外延构型,例如分散的非外延性原子,取向错误的粒子和(1 1 1)面的晶界。随着入射簇的尺寸增加,为更好的界面扩散和衬底上的接触外延所需的簇的内部温度也上升。

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