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DFT study of Au self-diffusion on Au(001) in the presence of a Cl adlayer

机译:在CL Adlayer的存在下Au(001)对Au自扩散的DFT研究

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The atomic-scale mechanism of self-diffusion on coinage metal surfaces has been investigated by density functional theory calculations before. However, the detailed role of the co-adsorbed anions and of the electrochemical interface is not yet fully understood. We present diffusion paths of a Au adatom on c(2 x 2)-Cl and c(root 2 x 2 root 2)R45 degrees-Cl Au(001) surfaces. In the case of the fully Cl covered Au(001) surfaces, the diffusion energy barriers are >= 0.44 eV. In the presence of a neighboring Cl vacancy, the diffusion barriers are drastically reduced to about half of the value for the fully Cl covered surface. Thus, Au self-diffusion is promoted by Cl vacancies. A first estimate for the effect of water on the diffusion energy barrier of the Cl vacancy is derived by calculating the interaction of configurations along the diffusion path with a water layer. Published under license by AIP Publishing.
机译:以前的密度泛函理论计算研究了凝固金属表面上的自扩散的原子级机制。 然而,尚未完全理解共吸收阴离子和电化学界面的详细作用。 我们在C(2×2)-Cl和C(根2×2根2)R45度-C1AU(001)表面上存在Au Adatom的扩散路径。 在完全CL覆盖Au(001)表面的情况下,扩散能屏障> = 0.44eV。 在相邻CL空位的情况下,扩散屏障在完全CL覆盖表面的尺寸下降到大约一半的值。 因此,CL缺点促进了AU自扩散。 通过计算沿着水层的扩散路径的配置的相互作用来推导出对CL空位的扩散能屏障对CL空位的延伸能阻挡的第一估计。 通过AIP发布在许可证下发布。

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