Low-Temperature Chemisorption. I. Flash Desorption of Nitrogen
- 1 January 1961
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 34 (1) , 29-38
- https://doi.org/10.1063/1.1731581
Abstract
Flash desorption(desorption by continuous temperature displacement) is applied to a study of the low‐temperature interactions of N2 with an initially clean tungstensurface. Molecular nitrogen is found to dissociate into atoms on adsorption even at 115°K, at a rate which diminishes with increasing temperature, but is initially independent of surface concentration. Formation of this atomically bound β nitrogen is hindered at low temperatures (T∼115°K) by competitive growth of an additional state γ, in which nitrogen, at ∼2½ times the concentration in the β state, is bound as molecules with an energy of 9 kcal mole—1, resulting in a total surface concentration of 600×1012 molecules cm—2. The population in this γ state depends sensitively upon the arrangement of atoms in the β state. Preadsorption at T∼300°K equalizes the populations in β and γ; annealing at T∼1000°K at impingement rates of 7×1015 molecules cm—2 min—1, further lowers n γ/n β and brings about rearrangement of the tungstensurface as well, without appreciable change in the adatom concentration. A third state α is formed at temperatures up to 400°K, with a binding energy of ∼20 kcal mole—1. Initially its rate of formation, just as that of γ at low temperatures, is dictated by the concentration of the atomically held β state. At 300°K and above the α concentration passes through a maximum, then diminishes; at low temperatures, it remains constant, achieving a maximum value 1/30 that of the γ state.Keywords
This publication has 10 references indexed in Scilit:
- Surface Migration of Nitrogen on TungstenThe Journal of Chemical Physics, 1960
- Calorimetric Heat of Adsorption—Nitrogen on TungstenThe Journal of Chemical Physics, 1959
- Interaction of Rare Gases with Metal Surfaces. I. A, Kr, and Xe on TungstenThe Journal of Chemical Physics, 1959
- Chemisorption of Nitrogen on TungstenThe Journal of Chemical Physics, 1959
- Structure-sensitive chemisorption: The mechanism of desorption from tungstenJournal of Physics and Chemistry of Solids, 1958
- The Interaction of Nitrogen with a Tungsten SurfaceThe Journal of Physical Chemistry, 1956
- Field EmissionPublished by Elsevier ,1956
- New Developments in the Production and Measurement of Ultra High VacuumJournal of Applied Physics, 1953
- Field Emission Microscope and Flash Filament Techniques for the Study of Structure and Adsorption on Metal SurfacesThe Journal of Physical Chemistry, 1953
- Oberflächenwanderung von Wolfram auf dem eigenen KristallgitterThe European Physical Journal A, 1949