O- and H-induced surface core level shifts on Ru(0001): prevalence of the additivity rule.
نویسندگان
چکیده
In previous work on adsorbate-induced surface core level shifts (SCLSs), the effects caused by O atom adsorption on Rh(111) and Ru(0001) were found to be additive: the measured shifts for first-layer Ru atoms depended linearly on the number of directly coordinated O atoms. Density-functional theory calculations quantitatively reproduced this effect, allowed separation of initial- and final-state contributions, and provided an explanation in terms of a roughly constant charge transfer per O atom. We have now conducted similar measurements and calculations for three well-defined adsorbate and coadsorbate layers containing O and H atoms: (1 × 1)-H, (2 × 2)-(O+H) and (2 × 2)-(O+3H) on Ru(0001). As H is stabilized in fcc sites in the prior two structures and in hcp sites in the latter, this enables us to not only study coverage and coadsorption effects on the adsorbate-induced SCLSs, but also the sensitivity to similar adsorption sites. Remarkably good agreement is obtained between experiment and calculations for the energies and geometries of the layers, as well as for all aspects of the SCLS values. The additivity of the next-neighbor adsorbate-induced SCLSs is found to prevail even for the coadsorbate structures. While this confirms the suggested use of SCLSs as fingerprints of the adsorbate configuration, their sensitivity is further demonstrated by the slightly different shifts unambiguously determined for H adsorption in either fcc or hcp hollow sites.
منابع مشابه
Surface Core - Level Shifts at an oxygen - rich Ru Surface :
We present density-functional theory calculations of Ru 3d and O 1s surface core-level shifts (SCLSs) at an oxygen-rich Ru(0001) surface, namely for the O(1× 1)/Ru(0001) chemisorption phase and for two surface terminations of fully oxidized RuO2(110). Including final-state effects, the computed SCLSs can be employed for the analysis of experimental X-ray photoelectron spectroscopy (XPS) data en...
متن کاملPhase diagram of hydrogen on Be(0001) from reconstruction-induced surface core-level shifts
The surface core-level shifts (SCLS) on the (0001) surface of beryllium were used to study the phase diagram of the hydrogen-induced reconstructions on this surface. Two different top-layer reconstruction phases are formed upon atomic hydrogen adsorption below and above room temperature, respectively. We are able to assign a characteristic core-level spectrum to an individual reconstruction pha...
متن کاملInteraction of Ultrathin Films of Cu with Rh ( 100 ) and Ru ( 0001 ) : An XPS Study
The interaction of ultrathin fdms of Cu with Rh(100) and Ru(0001) has been examined by using X-ray photoelectron spectrapcopy (XPS). The effects of surface annealing temperature, adsorbate coverage (film thickness), and CO chemisorption were investigated. The XPS data show that the atoms in a monolayer of Cu supported on Rh( 100) or Ru(0001) are electronically perturbed with respect to the surf...
متن کاملElectronic Interactions in Bimetallic Systems: An X-ray Photoelectron Spectroscopic Study
The electronic interactions in Cu/Rh( loo), Cu/Ru(OOOI), Ni/Ru(0001), Ni/W( 1 lo), and Pd/W( 1 IO) have been examined by means of X-ray photoelectron spectroscopy (XPS). The shifts in core-level binding energies indicate that the adatoms in a monolayer of Ni, Cu, or Pd are electronically perturbed with respect to the surface atoms of Ni(100), Cu( IOO), or Pd(100). The magnitude of the electroni...
متن کاملNon-local Effects on Oxygen-Induced Surface Core Level Shifts of Re(0001)
The electronic structure of clean and oxygencovered Re(0001) was investigated by combining high energy resolution core level photoelectron spectroscopy and density functional theory. For the clean surface, we detect two distinct Re 4f7/2 components shifted by 95 meV, which we ascribe to photoemission from the bulk and the top layer of the crystal. Oxygen adsorption at room temperature leads to ...
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:
- Journal of physics. Condensed matter : an Institute of Physics journal
دوره 21 13 شماره
صفحات -
تاریخ انتشار 2009