Title of article
The surface oxide: A LEED, DFT and STM study
Author/Authors
Kosteln?k، نويسنده , , Petr and Seriani، نويسنده , , Nicola and Kresse، نويسنده , , Georg and Mikkelsen، نويسنده , , Anders and Lundgren، نويسنده , , Edvin and Blum، نويسنده , , Volker and ?ikola، نويسنده , , Tom?? and Varga، نويسنده , , Peter J. Schmid and Laurette S. Tuckerman ، نويسنده , , Michael، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2007
Pages
8
From page
1574
To page
1581
Abstract
Using low energy electron diffraction (LEED), density functional theory (DFT) and scanning tunneling microscopy (STM), we have re-analyzed the Pd ( 1 0 0 ) - ( 5 × 5 ) R 27 ° – O surface oxide structure consisting, in the most recent model, of a strained PdO(1 0 1) layer on top of the Pd(1 0 0) surface [M. Todorova et al., Surf. Sci. 541 (2003) 101]. Both, DFT simulations using the Vienna Ab initio Simulation Package (VASP) and tensor LEED I(V) analysis of newly acquired LEED experimental data, show that the PdO(1 0 1) model is essentially correct. However, compared to the previous study, there is a horizontal shift of the PdO(1 0 1) layer with respect to the Pd(1 0 0) substrate. The atomic coordinates derived by DFT and LEED (RP = 0.162) are in excellent agreement with each other. We also present STM images with atomic resolution showing domain boundaries on the surface oxide and discuss the bonding geometry between the surface oxide and the substrate.
Keywords
Low index single crystal surfaces , Oxidation , Low energy electron diffraction (LEED) , Density functional calculations , surface structure , PALLADIUM , Scanning tunneling microscopy
Journal title
Surface Science
Serial Year
2007
Journal title
Surface Science
Record number
1700533
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