Title of article
Adsorption dynamics of hydrogen and carbon monoxide on V/Pd(1 1 1) alloy surfaces
Author/Authors
Beutl، نويسنده , , M and Lesnik، نويسنده , , J، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2001
Pages
6
From page
353
To page
358
Abstract
We have studied the adsorption dynamics of hydrogen and carbon monoxide on a clean Pd(1 1 1) plane and on V/Pd(1 1 1) alloy surfaces using a supersonic molecular beam. The alloy surfaces were prepared by deposition of small amounts of vanadium on the palladium crystal through evaporation at a temperature of 570 K. At this temperature the adsorbed vanadium diffuses into the second layer forming a subsurface alloy. For molecular hydrogen the subsurface vanadium leads to a strong decrease of the initial sticking coefficient compared to the clean Pd surface. In contrast to Pd(1 1 1), where strong rotational effects in the adsorption of H2 are observed, the modified Pd surfaces exhibit no influence of the rotational state of the impinging molecule on the adsorption. In addition, no isotope effect between H2 and D2 can be seen. In the case of carbon monoxide the binding energy of the molecules is drastically reduced on the V–Pd surface alloy compared to the clean Pd. An interpretation of the observed effects is given in terms of the modified electronic structure of the alloy surface.
Keywords
Alloys , Hydrogen molecule , PALLADIUM , physical adsorption , quantum effects , sticking , vanadium , CARBON MONOXIDE
Journal title
Surface Science
Serial Year
2001
Journal title
Surface Science
Record number
1691011
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