The kinetic model of exoergic surface reactions developed in a previous contribution [M. Tomellini, Surf. Sci. 577 (2005) 200] has been extended to include multiquantum processes of vibrational energy transfer to the solid. It is shown that, under quasi-steady state conditions, the flux of adsorbing atoms leads to overpopulation of the adatom vibrational ladder with respect to the Boltzmann distribution and to enhanced recombination rates. By means of the associative model for adatom recombination, the vibrational populations have been estimated from experimental data on the kinetics of D-adatoms abstraction by gas H-atoms at Pt(111), Pt(110), Ni(100) and Cu(111) surfaces. These Populations have been found to be hyperthermal and the shape of the energy distribution functions approximated by the Treanor equation. The impact of the interplay between energy dissipation and diatom formation on the reaction rate, has also been analysed and discussed. (c) 2005 Elsevier B.V. All rights reserved.

Molinari, E., Tomellini, M. (2006). The dissipation of vibrational quanta in exoergic surface processes and its impact on reaction rates: A case study. SURFACE SCIENCE, 600(2), 273-286 [10.1016/j.susc.2005.10.023].

The dissipation of vibrational quanta in exoergic surface processes and its impact on reaction rates: A case study

MOLINARI, ETTORE;TOMELLINI, MASSIMO
2006-01-01

Abstract

The kinetic model of exoergic surface reactions developed in a previous contribution [M. Tomellini, Surf. Sci. 577 (2005) 200] has been extended to include multiquantum processes of vibrational energy transfer to the solid. It is shown that, under quasi-steady state conditions, the flux of adsorbing atoms leads to overpopulation of the adatom vibrational ladder with respect to the Boltzmann distribution and to enhanced recombination rates. By means of the associative model for adatom recombination, the vibrational populations have been estimated from experimental data on the kinetics of D-adatoms abstraction by gas H-atoms at Pt(111), Pt(110), Ni(100) and Cu(111) surfaces. These Populations have been found to be hyperthermal and the shape of the energy distribution functions approximated by the Treanor equation. The impact of the interplay between energy dissipation and diatom formation on the reaction rate, has also been analysed and discussed. (c) 2005 Elsevier B.V. All rights reserved.
2006
Pubblicato
Rilevanza internazionale
Articolo
Sì, ma tipo non specificato
Settore FIS/03 - FISICA DELLA MATERIA
English
Con Impact Factor ISI
Abstraction and recombination of Hydrogen and Deuterium atoms; Energy disposal in exoergic reactions; Kinetics of adatom recombination; Non-equilibrium phenomena
Molinari, E., Tomellini, M. (2006). The dissipation of vibrational quanta in exoergic surface processes and its impact on reaction rates: A case study. SURFACE SCIENCE, 600(2), 273-286 [10.1016/j.susc.2005.10.023].
Molinari, E; Tomellini, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/37483
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