
Inhaltsverzeichnis
Supersonic molecular beams studies of surfaces. - Potential energy surfaces for the dynamics of elementary gas-surface processes. - Thermal energy atomic and molecular beam diffraction from solid surfaces. - Using molecular reflectivity to explore reaction dynamics at metal surfaces. - Hydrogen dissociation on stepped metal surfaces. - Dynamics of the H
2
interaction with bimetallic surface alloys from first principles. . - Hydrogen recombination on graphitic surfaces. - State-selective reactivity of molecules at surfaces. - The effects of lattice motion on gas-surface reactions. - Reaction dynamics of molecular hydrogen on silicon surfaces --importance of lattice degrees of freedom. - Electronically nonadiabatic molecule surface interactions. . - Non-adiabatic effects at surfaces simulated with TDDFT molecular dynamics. - Theory of non-adiabatic molecular dynamics at surfaces. - Scattering of hyperthermal effusive atomic and molecular beams at metal surfaces. - Energy dissipation channels in reactive and non-reactive scattering at surfaces. - O
2
adsorption dynamics at metal surfaces: non-adiabatic effects, dissociation, and dissipation.
From the book reviews:
The volume collects the work carried out by many among the best groups and authors in the field, including the excellent contributions from the editors home-institutions, the CONICET-UNR at Rosario, Argentina and, last but not least, the Centro de Física de Materiales of CSIC, and the Donostia International Physics Center (DIPC) of the Basque Country University at San Sebastian. This important book is a must for all surface science laboratories. (G. Benedek, Il Nuovo Saggiatore, en. sif. it, Vol. 31 (1-2), 2015)
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