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Atomic and electronic structures of thin NaCl films grown on a Ge(0 0 1) surface
Journal article   Peer reviewed

Atomic and electronic structures of thin NaCl films grown on a Ge(0 0 1) surface

Shiow-Fon Tsay and D.-S. Lin
Surface Science, Vol.603(13), pp.2102-2107
01/07/2009

Abstract

Alkali halides Density functional calculations Germanium Semiconductor-insulator interfaces Surface electronic phenomena Surface structure Thin film structures
Density functional theory (DFT) with LDA and GGA have been employed to study the interface and thin film properties of NaCl on a Ge(0 0 1) surface. The atomic and electronic structures of thin NaCl films from one to ten monolayers were analyzed. The layer adsorption energies show that a quasi-crystalline (0 0 1) fcc NaCl film is built up via a layer-by-layer growth mode with NaCl thickness above 2 ML. Simulated STM images show a well-resolved (1 × 1) NaCl atomic structure for sample bias voltage V <sub>s</sub> < -2.5 V and the bright protrusions should be assigned to the Cl <sup>-</sup> ions of the NaCl film. The Ge substrate dimer is reserved and buckled like a clean Ge(0 0 1)-p(2 × 2) surface as the result of weak interface interaction between the dangling bonds coming from valence π states of the Ge substrate and the 3p states of the interfacial Cl <sup>-</sup> ion. These results are consistent with the experiments of STM, LEED and EELS. © 2009 Elsevier B.V. All rights reserved.

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