First-principles study of adsorption, diffusion, and charge stability of metal adatoms on alkali halide surfaces
نویسندگان
چکیده
In this work we have performed first-principles calculations based on the spin-polarized density-functional theory for the adsorption and diffusion of Au, Ag, and Pb atoms on NaCl 001 , KCl 001 , and KBr 001 surfaces. We consider also the influence of adatom charge on the adsorption and diffusion. In order to characterize the different systems we explicitly calculate charge transfer between surface and adatom and consider the relative stability of the various charge states. Our results show that in general, apart from positively charged systems, the adatoms are weakly bound to the surface via orbital polarization and ionic interactions, and relatively little charge transfer occurs. Au and Ag adatoms are highly mobile on all surfaces, although they can be pinned by removal of an electron. In contrast, Pb adatoms are fairly immobile, and their mobility increases upon charging. Analysis of the charge stability suggests that Ag offers the potential of charge controlled mobility on insulators.
منابع مشابه
Density Functional Study of Alkali Metal Atoms and Monolayers on Graphite (0001)
Alkali metal atoms (Li, Na, K, Rb, Cs), dimers and (2×2) monolayers on a graphite (0001) surface have been studied using density functional theory, pseudopotentials, and a periodic substrate. The adatoms bind at the hollow site (graphite hexagon), with Li lying closest to (1.84Å) and Cs farthest (3.75Å) from the surface. The adsorption energies range between 0.55 − 1.21 eV, and the energy order...
متن کاملThe electronic and diffusion properties of metal adatoms on graphene sheets: a first-principles study
We use first-principles calculations to investigate the geometric, electronic and magnetic properties of metal adatoms on two typical graphene substrates (monolayer and bilayer). Firstly, we study the adsorption behaviors and the doping effects of metal atoms on pristine and defective bilayer graphene sheets (PBG and DBG). It is found that the metal doping in DBG sheets is more stable than that...
متن کاملChange of Electronic Structures by Dopant-Induced Local Strain
Ag-induced Si(111)-√3 x √3 surfaces (√3-Ag) exhibit unusual electronic structures that cannot be explained by the conventional rigid band model and charge transfer model. The (√3-Ag surfaces feature a free-electron-like parabolic band, the S1 band, that selectively shifts downward upon the adsorption of noble metal or alkali metal adatoms. Furthermore, the downward shift of S1 is independent of...
متن کاملAdsorption of metal adatoms on single-layer phosphorene.
Single- or few-layer phosphorene is a novel two-dimensional direct-bandgap nanomaterial. Based on first-principles calculations, we present a systematic study on the binding energy, geometry, magnetic moment and electronic structure of 20 different adatoms adsorbed on phosphorene. The adatoms cover a wide range of valences, including s and p valence metals, 3d transition metals, noble metals, s...
متن کاملFirst - principles study of adsorption and diffusion on Ge / Si ( 001 ) - ( 2 · 8 ) and Ge / Si ( 105 ) - ( 1 · 2 ) surfaces
Using first-principles total-energy calculations, we have investigated the adsorption and diffusion of Si and Ge adatoms on Ge/ Si(001)-(2 · 8) and Ge/Si(105)-(1 · 2) surfaces. The dimer vacancy lines on Ge/Si(001)-(2 · 8) and the alternate SA and rebonded SB steps on Ge/Si(105)-(1 · 2) are found to strongly influence the adatom kinetics. On Ge/Si(001)-(2 · 8) surface, the fast diffusion path i...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2008