Zobrazeno 1 - 10
of 78
pro vyhledávání: '"M.P. D'Evelyn"'
Autor:
Adrian P. Sutton, I.I. Oleinik, Corbett Chandler. Battaile, Stephen J. Harris, James E. Butler, David J. Srolovitz, David G. Pettifor, David S. Dandy, M.P. D'evelyn
Publikováno v:
MRS Proceedings. 616
CVD diamond is an enabling material for diverse applications. In recent years, multiscale modelling of CVD growth in conjunction with experimental studies of the deposition processes has made a substantial progress towards our understanding of the fu
Autor:
M.P. D'Evelyn, Robert J. Madix
Publikováno v:
Surface Science Reports. 3:413-495
Molecular beam scattering studies of reactive processes on solid surfaces have been conducted for two decades. This article presents an overview of reactive scattering, together with a brief description of the experimental requirements and a discussi
Publikováno v:
Surface Science. 172:L561-L567
We present a molecular beam study on the dissociative sticking coefficient for CO on a Ni(100) surface. In the range from 1.6 to 20 kcal/mol the observed dissociative sticking coefficient at a surface temperature of 500 K is 0.02 and independent of b
Publikováno v:
Surface Science. 180:47-76
The dynamics of molecular chemisorption of CO on Ni(100) has been investigated using supersonic molecular beam techniques. In order to probe the role of energy accommodation and of so-called precursor states, we have determined the dependence of the
Publikováno v:
Surface Science Letters. 172:L561-L567
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Autor:
Robert J. Madix, M.P. D'Evelyn
Publikováno v:
Chemischer Informationsdienst. 16
Molecular beam scattering studies of reactive processes on solid surfaces have been conducted for two decades. This article presents an overview of reactive scattering, together with a brief description of the experimental requirements and a discussi
Publikováno v:
Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films. 3:1561-1562
Akademický článek
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Publikováno v:
Surface Science Letters. 167:A86
The dynamics of the dissociative chemisorption of CO 2 on clean Ni(100) has been investigated using supersonic molecular beam and ultrahigh-vacuum techniques. The dissociative sticking probability, s 0 , to form adsorbed CO and O, was found to be enh