Conversion of energy at the gas–solid interface lies at the heart of many industrial applications such as heterogeneous catalysis. Dissipation of parts of this energy into the substrate bulk drives the thermalization of surface species, but also constitutes a potentially unwanted loss channel. At present, little is known about the underlying microscopic dissipation mechanisms and their (relative) efficiency. At metal surfaces, prominent such mechanisms are the generation of substrate phonons and the electronically non-adiabatic excitation of electron–hole pairs. In recent years, dedicated surface science experiments at defined single-crystal surfaces and predictive-quality first-principles simulations have increasingly been used to analyze ...
We investigate the role played by electron-hole pair and phonon excitations in the interaction of re...
Resumen del trabajo presentado al MANA International Symposium, celebrado en Tsukuba (Japan) del 9 a...
Charge-transfer is of key importance in many physical, chemical and biological processes, including ...
Conversion of energy at the gas–solid interface lies at the heart of many industrial applications su...
Resumen del trabajo presentado al CECAM workshop “Challenges in reaction dynamics of gas-surface int...
We present an embedding technique for metallic systems that makes it possible to model energy dissip...
Trabajo presentado en el 23rd International Workshop on Inelastic Ion-Surface Collisions IISC (IISC-...
We augment ab initio molecular dynamics simulations with a quantitative account of phononic dissipat...
Nonadiabatic effects that arise from the concerted motion of electrons and atoms at comparable energ...
Helium spin echo experiments combined with ab initio based Langevin molecular dynamics simulations a...
Contains reports on four research projects.National Science Foundation (Grant DMR81-19292)National S...
Great success has been achieved in the modeling of gas-surface elementary processes by the use of th...
Recent years have witnessed an ever growing interest in theoretically studying chemical processes at...
The rationalization of elementary processes at surfaces is of prime importance for numerous natural ...
We present first-principles calculations of the sticking coefficient of O2 at Pd(100) to assess the ...
We investigate the role played by electron-hole pair and phonon excitations in the interaction of re...
Resumen del trabajo presentado al MANA International Symposium, celebrado en Tsukuba (Japan) del 9 a...
Charge-transfer is of key importance in many physical, chemical and biological processes, including ...
Conversion of energy at the gas–solid interface lies at the heart of many industrial applications su...
Resumen del trabajo presentado al CECAM workshop “Challenges in reaction dynamics of gas-surface int...
We present an embedding technique for metallic systems that makes it possible to model energy dissip...
Trabajo presentado en el 23rd International Workshop on Inelastic Ion-Surface Collisions IISC (IISC-...
We augment ab initio molecular dynamics simulations with a quantitative account of phononic dissipat...
Nonadiabatic effects that arise from the concerted motion of electrons and atoms at comparable energ...
Helium spin echo experiments combined with ab initio based Langevin molecular dynamics simulations a...
Contains reports on four research projects.National Science Foundation (Grant DMR81-19292)National S...
Great success has been achieved in the modeling of gas-surface elementary processes by the use of th...
Recent years have witnessed an ever growing interest in theoretically studying chemical processes at...
The rationalization of elementary processes at surfaces is of prime importance for numerous natural ...
We present first-principles calculations of the sticking coefficient of O2 at Pd(100) to assess the ...
We investigate the role played by electron-hole pair and phonon excitations in the interaction of re...
Resumen del trabajo presentado al MANA International Symposium, celebrado en Tsukuba (Japan) del 9 a...
Charge-transfer is of key importance in many physical, chemical and biological processes, including ...