Low-lying electronic excitations in metals, so-called hot electrons, efficiently mediate molecule-metal energy transfer and contribute to energy loss during molecular reactions at surfaces. They furthermore play an important role in plasmon-driven chemistry. Electronic friction represents a simple and effective concept to model hot electron-induced energy loss under ambient conditions. Different methods exist that vary in their description of magnitude, coordinate and directional dependence of friction during reactive molecular scattering at metal surfaces. Using molecular dynamics simulations with electronic friction, we systematically study the effect of hot electrons on measurable state-to-state scattering probabilities of molecular hydr...
Molecular dynamics near metal surfaces underlie a number of fields in chemistry, including chemisorp...
Molecular dynamics near metal surfaces underlie a number of fields in chemistry, including chemisorp...
The reactivity of a surface depends strongly on the surface structure. To study the influence of sur...
The breakdown of the Born-Oppenheimer approximation gives rise to nonadiabatic effects in gas-surfac...
Electronic friction and the ensuing nonadiabatic energy loss play an important role in chemical reac...
Nonadiabatic effects that arise from the concerted motion of electrons and atoms at comparable energ...
Nonadiabatic effects that arise from the concerted motion of electrons and atoms at comparable energ...
When a hydrogen atom collides with a surface it may either scatter or stick to the surface, dependin...
Conspectus Energy dissipation at surfaces and interfaces is mediated by excitation of elementary pro...
Molecular dynamics with electronic friction (MDEF) at the level of the local density friction approx...
Hot electrons and surface-plasmon-driven chemistry are amongst the most actively studied research su...
Using molecular dynamics simulations, we predict that the inclusion of nonadiabatic electronic excit...
Molecular dynamics with electronic friction (MDEF) at the level of the local density friction approx...
Fundamental understanding of energy dissipation on surfaces has been important issues for studying r...
Energy loss from the translational motion of an atom or molecule impinging on a metal surface to the...
Molecular dynamics near metal surfaces underlie a number of fields in chemistry, including chemisorp...
Molecular dynamics near metal surfaces underlie a number of fields in chemistry, including chemisorp...
The reactivity of a surface depends strongly on the surface structure. To study the influence of sur...
The breakdown of the Born-Oppenheimer approximation gives rise to nonadiabatic effects in gas-surfac...
Electronic friction and the ensuing nonadiabatic energy loss play an important role in chemical reac...
Nonadiabatic effects that arise from the concerted motion of electrons and atoms at comparable energ...
Nonadiabatic effects that arise from the concerted motion of electrons and atoms at comparable energ...
When a hydrogen atom collides with a surface it may either scatter or stick to the surface, dependin...
Conspectus Energy dissipation at surfaces and interfaces is mediated by excitation of elementary pro...
Molecular dynamics with electronic friction (MDEF) at the level of the local density friction approx...
Hot electrons and surface-plasmon-driven chemistry are amongst the most actively studied research su...
Using molecular dynamics simulations, we predict that the inclusion of nonadiabatic electronic excit...
Molecular dynamics with electronic friction (MDEF) at the level of the local density friction approx...
Fundamental understanding of energy dissipation on surfaces has been important issues for studying r...
Energy loss from the translational motion of an atom or molecule impinging on a metal surface to the...
Molecular dynamics near metal surfaces underlie a number of fields in chemistry, including chemisorp...
Molecular dynamics near metal surfaces underlie a number of fields in chemistry, including chemisorp...
The reactivity of a surface depends strongly on the surface structure. To study the influence of sur...