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Автор Petra Tegeder
Автор Eugen Illenberger
Дата выпуска 2007-10-01
dc.description The influence of the environment and orientation on the evolution of negative ion resonances at surfaces following low energy (0-15 eV) electron attachment to adsorbed and condensed molecules is studied by means of electron stimulated desorption (ESD) of negative ions. In the low energy regime ESD of anions usually proceeds via dissociative electron attachment (DEA) to an individual molecule at or near the surface. Three prototypical cases are discussed in the light of the corresponding gas phase process. (i) ESD of F<sup>−</sup> from a multilayer film of NF<sub>3</sub> shows desorption features which are considerably narrower compared to the corresponding gas phase DEA analogues. This is a mirror of the particular dynamics of the unimolecular reaction in relation to the energy constraints operative in ion desorption. In addition to the strong F<sup>−</sup> desorption it is demonstrated by applying surface vibrational spectroscopy that (resonant) dissociative electron attachment at low energies (0–5 eV) is responsible for chemical changes within the NF<sub>3</sub> film, viz. formation of NF<sub>2</sub> radicals and N<sub>2</sub>F<sub>4</sub> molecules. (ii) In the ESD of Cl<sup>−</sup> from submonolayer Cl<sub>2</sub> adsorbed on rare gas surfaces a strong dependence of both the signal intensity and shape of the desorption resonance on the angle of incidence of the electron beam with respect to the surface normal is observed. This behavior points towards a preferential orientation of the molecules perpendicular to the surface. (iii) The absolute DEA cross-section can appreciably be enhanced by the medium due to an increase of the autodetachment lifetime of the negative ion resonance. This is demonstrated in ClCN for an electronically excited resonance.
Формат application.pdf
Издатель Institute of Physics Publishing
Копирайт © 2007 IOP Publishing Ltd
Название Evolution of Negative Ion Resonances at Surfaces: Effect of Environment and Orientation
Тип paper
DOI 10.1088/1742-6596/86/1/012007
Electronic ISSN 1742-6596
Print ISSN 1742-6588
Журнал Journal of Physics: Conference Series
Том 86
Первая страница 12007
Последняя страница 12024
Выпуск 1

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