Title of article :
Metal–support interactions in systems palladium deposited on oxidized tungsten surfaces
Author/Authors :
Paul E. Plsek، نويسنده , , Jan and Jirka، نويسنده , , Ivan and Nikolajenko، نويسنده , , Vladim?r and Knor، نويسنده , , Zlatko، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2006
Pages :
7
From page :
3943
To page :
3949
Abstract :
The morphology of the palladium (Pd) overlayers on oxidized tungsten (W) tips has been studied by Field Emission Microscopy (FEM). The effect of thermal treatment on the interaction of Pd with the support and chemisorption of CO on variously treated Pd-containing samples has been investigated. The results are discussed in relation to complementary macroscopic experiments by synchrotron radiation excited photoelectron spectroscopy (SRPES) and thermally programmed desorption (TPD) of carbon monoxide (CO) on a polycrystalline W foil. A distinct influence of support pre-oxidation on the Pd layer growth has been demonstrated. Two types of oxidized supports have been used: tungsten with oxygen pre-adsorbed at room temperature (RT) and then heated to 700 K (WOx/W (RT) system) and tungsten oxidized at 1300 K (WOx/W (1300 K) system) in situ. The surface of WOx/W (1300 K) sample is fully oxidized in contrast to WOx/W (RT), where the presence of un-oxidized patches has been demonstrated by SRPES measurements. A Pd layer grows on the WOx/W (RT) surface mostly on the densely populated planes (1 1 0) and (2 1 1) of the W tip. Heating of this system up to 700 K results in disaggregation of the original Pd layer. Pd clusters on the tungsten tip oxidized at 1300 K are localized on the atomically rough (1 1 1) plane. The observed differences in CO adsorption on the aforementioned types of investigated samples can be attributed to differences in the chemical nature of their surfaces.
Keywords :
Field emission microscopy , Thermal desorption spectroscopy , Growth , Metal–oxide interfaces , Synchrotron radiation photoelectron spectroscopy , PALLADIUM , CARBON MONOXIDE , tungsten oxide
Journal title :
Surface Science
Serial Year :
2006
Journal title :
Surface Science
Record number :
1699363
Link To Document :
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