The dynamics of the Eley-Rideal abstraction reaction of hydrogen atoms on a movable graphitic surface is investigated for the first time in a numerically exact fully quantum setting. A system-bath strategy was applied where the two recombining H atoms and a substrate C atom form a relevant subsystem, while the rest of the lattice takes the form of an independent oscillator bath. High-dimensional wavepacket simulations were performed in the collision energy range 0.2-1.0 eV with the help of the multi-layer multi-configuration time-dependent Hartree method, focusing on the collinear reaction on a zero-temperature surface. Results show that the dynamics is close to a sudden limit in which the reaction is much faster than the substrate motion. ...
We studied Eley-Rideal molecular hydrogen formation on graphite using ab initio molecular dynamics, ...
The formation of H2 in the interstellar medium, from two hydrogen atoms, is a fundamental question i...
Thanks to the peculiar electronic properties of gas-solid interfaces, surfaces play an important rol...
A number of dynamical processes involving hydrogen atoms on graphite surfaces is addressed by means ...
Eley-Rideal formation of hydrogen molecules on graphite, as well as competing collision induced proc...
A number of dynamical processes involving hydrogen atoms on graphite surfaces is addressed by means ...
The Eley-Rideal abstraction of hydrogen atoms on graphitic surfaces at cold collision energies was i...
The Eley–Rideal abstraction of hydrogen atoms on graphitic surfaces at cold collision energies was i...
The associative desorption of H2 (v,j) on a graphite(0001) surface via an Eley-Rideal mechanism has ...
Following previous investigation of collision induced (CI) processes involving hydrogen atoms chemis...
The associative desorption of hydrogen atoms on graphite via an Eley-Rideal mechanism is studied the...
Collision induced (CI) processes involving hydrogen atoms on a graphite surface are studied quantum ...
Following our recent system-bath modeling of the interaction between a hydrogen atom and a graphene ...
The associative desorption of H2(î) on a graphite(0001) surface via an Eley-Rideal mechanism has bee...
We examine in this paper the associative desorption of two hydrogen atoms on a slab model that mimic...
We studied Eley-Rideal molecular hydrogen formation on graphite using ab initio molecular dynamics, ...
The formation of H2 in the interstellar medium, from two hydrogen atoms, is a fundamental question i...
Thanks to the peculiar electronic properties of gas-solid interfaces, surfaces play an important rol...
A number of dynamical processes involving hydrogen atoms on graphite surfaces is addressed by means ...
Eley-Rideal formation of hydrogen molecules on graphite, as well as competing collision induced proc...
A number of dynamical processes involving hydrogen atoms on graphite surfaces is addressed by means ...
The Eley-Rideal abstraction of hydrogen atoms on graphitic surfaces at cold collision energies was i...
The Eley–Rideal abstraction of hydrogen atoms on graphitic surfaces at cold collision energies was i...
The associative desorption of H2 (v,j) on a graphite(0001) surface via an Eley-Rideal mechanism has ...
Following previous investigation of collision induced (CI) processes involving hydrogen atoms chemis...
The associative desorption of hydrogen atoms on graphite via an Eley-Rideal mechanism is studied the...
Collision induced (CI) processes involving hydrogen atoms on a graphite surface are studied quantum ...
Following our recent system-bath modeling of the interaction between a hydrogen atom and a graphene ...
The associative desorption of H2(î) on a graphite(0001) surface via an Eley-Rideal mechanism has bee...
We examine in this paper the associative desorption of two hydrogen atoms on a slab model that mimic...
We studied Eley-Rideal molecular hydrogen formation on graphite using ab initio molecular dynamics, ...
The formation of H2 in the interstellar medium, from two hydrogen atoms, is a fundamental question i...
Thanks to the peculiar electronic properties of gas-solid interfaces, surfaces play an important rol...