Viewing the atomic-scale motion and energy dissipation pathways involved in forming a covalent bond is a longstanding challenge for chemistry. We performed scattering experiments of H atoms from graphene and observed a bimodal translational energy loss distribution. Using accurate first-principles dynamics simulations, we show that the quasi-elastic channel involves scattering through the physisorption well where collision sites are near the centers of the six-membered C-rings. The second channel results from transient C-H bond formation, where H atoms lose 1 to 2 electron volts of energy within a 10-femtosecond interaction time. This remarkably rapid form of intramolecular vibrational relaxation results from the C atom's rehybridization du...
An accurate system-bath model to investigate the quantum dynamics of hydrogen atoms chemisorbed on g...
Graphane is formed by bonding hydrogen (and deuterium) atoms to carbon atoms in the graphene mesh, w...
Graphene edges and their functionalization influence the electronic and magnetic properties of graph...
Viewing the atomic-scale motion and energy dissipation pathways involved in forming a covalent bond ...
When a hydrogen or a deuterium atom is interacting with a graphene surface during scattering events...
"We study chemical reaction between a single hydrogen atom and a graphene, which is the elemental re...
Bulk defective graphene produced by thermal exfoliation of graphite oxide was treated under H-2 and ...
Following our recent system-bath modeling of the interaction between a hydrogen atom and a graphene ...
Bulk defective graphene produced by thermal exfoliation of graphite oxide was treated under H<sub>2<...
International audienceElementary interactions between H atoms and monolayer graphene are investigate...
It is commonly believed that it is unfavorable for adsorbed H atoms on carbonaceous surfaces to form...
We examine in this paper the associative desorption of two hydrogen atoms on a slab model that mimic...
The trapping and sticking of H and D atoms on the graphite ͑0001͒ surface is examined, over the ener...
The coupled channel method via the Local Reflection (LORE) matrix is employed to investigate the qua...
Quantum-mechanochemical reaction-coordinate simulations have been performed to investigate the mecha...
An accurate system-bath model to investigate the quantum dynamics of hydrogen atoms chemisorbed on g...
Graphane is formed by bonding hydrogen (and deuterium) atoms to carbon atoms in the graphene mesh, w...
Graphene edges and their functionalization influence the electronic and magnetic properties of graph...
Viewing the atomic-scale motion and energy dissipation pathways involved in forming a covalent bond ...
When a hydrogen or a deuterium atom is interacting with a graphene surface during scattering events...
"We study chemical reaction between a single hydrogen atom and a graphene, which is the elemental re...
Bulk defective graphene produced by thermal exfoliation of graphite oxide was treated under H-2 and ...
Following our recent system-bath modeling of the interaction between a hydrogen atom and a graphene ...
Bulk defective graphene produced by thermal exfoliation of graphite oxide was treated under H<sub>2<...
International audienceElementary interactions between H atoms and monolayer graphene are investigate...
It is commonly believed that it is unfavorable for adsorbed H atoms on carbonaceous surfaces to form...
We examine in this paper the associative desorption of two hydrogen atoms on a slab model that mimic...
The trapping and sticking of H and D atoms on the graphite ͑0001͒ surface is examined, over the ener...
The coupled channel method via the Local Reflection (LORE) matrix is employed to investigate the qua...
Quantum-mechanochemical reaction-coordinate simulations have been performed to investigate the mecha...
An accurate system-bath model to investigate the quantum dynamics of hydrogen atoms chemisorbed on g...
Graphane is formed by bonding hydrogen (and deuterium) atoms to carbon atoms in the graphene mesh, w...
Graphene edges and their functionalization influence the electronic and magnetic properties of graph...