To explore hydrogen mobility on graphene, density functional calculations are used to determine the magnitude of binding energy versus the diffusion barrier for graphene, considering the effects of hole and electron doping, B and N substitutional dopants, and oxygen heteroatoms. Although C–H binding energy and the barrier for chemical diffusion are not correlated, the binding energy of H in the lowest energy site on top of a C atom correlates with the binding energy of H over a “bridge” C–C bond, which is the transition state for chemical diffusion. Using this framework, we demonstrate that both B substitutionally doped graphene and hydoxylated graphene have the potential to simultaneously meet thermodynamic and kinetic constraints for reve...
Nanoscience and Nanotechnology (N&N), Madrid, mayo 17-20, 2022Recent discoveries that graphene perme...
We study the diffusion of atomic hydrogen (H) on graphene surface using first-principles calculation...
To investigate the microscopic mechanism for the wet-chemical hydrogenation of graphene, first princ...
To explore hydrogen mobility on graphene, density functional calculations are used to determine the ...
Hydrogen is frequently touted as the "fuel of the future" because of its huge potential as clean ene...
Nitrogen-doped graphene was recently synthesized and was reported to be a catalyst for hydrogen diss...
Using density functional theory calculations, we have investigated a strategy for the facile hydroge...
The results of molecular dynamics (MD) simulations of atomic hydrogen kinetics on graphene are prese...
Hydrogenation of carbon materials has been attracting a wide range of interests as an application of...
The results of molecular dynamics (MD) simulations of atomic hydrogen kinetics on graphene are prese...
Contains fulltext : 34643.pdf (preprint version ) (Closed access)Density functiona...
The lack of efficient hydrogen storage materials has hindered the potential use of hydrogen as fuel ...
Density functional calculations of electronic structure, total energy, structural distortions, and m...
The hydrogen spillover mechanism has been discussed in the field of hydrogen storage and is believed...
To investigate the microscopic mechanism for the wet-chemical hydrogenation of graphene, first princ...
Nanoscience and Nanotechnology (N&N), Madrid, mayo 17-20, 2022Recent discoveries that graphene perme...
We study the diffusion of atomic hydrogen (H) on graphene surface using first-principles calculation...
To investigate the microscopic mechanism for the wet-chemical hydrogenation of graphene, first princ...
To explore hydrogen mobility on graphene, density functional calculations are used to determine the ...
Hydrogen is frequently touted as the "fuel of the future" because of its huge potential as clean ene...
Nitrogen-doped graphene was recently synthesized and was reported to be a catalyst for hydrogen diss...
Using density functional theory calculations, we have investigated a strategy for the facile hydroge...
The results of molecular dynamics (MD) simulations of atomic hydrogen kinetics on graphene are prese...
Hydrogenation of carbon materials has been attracting a wide range of interests as an application of...
The results of molecular dynamics (MD) simulations of atomic hydrogen kinetics on graphene are prese...
Contains fulltext : 34643.pdf (preprint version ) (Closed access)Density functiona...
The lack of efficient hydrogen storage materials has hindered the potential use of hydrogen as fuel ...
Density functional calculations of electronic structure, total energy, structural distortions, and m...
The hydrogen spillover mechanism has been discussed in the field of hydrogen storage and is believed...
To investigate the microscopic mechanism for the wet-chemical hydrogenation of graphene, first princ...
Nanoscience and Nanotechnology (N&N), Madrid, mayo 17-20, 2022Recent discoveries that graphene perme...
We study the diffusion of atomic hydrogen (H) on graphene surface using first-principles calculation...
To investigate the microscopic mechanism for the wet-chemical hydrogenation of graphene, first princ...