It is commonly believed that it is unfavorable for adsorbed H atoms on carbonaceous surfaces to form H2 without the help of incident H atoms. Using ring-polymer instanton theory to describe multidimensional tunnelling effects, combined with ab initio electronic structure calculations, we find that these quantum-mechanical simulations reveal a qualitatively different picture. Recombination of adsorbed H atoms, which was believed to be irrelevant at low temperature due to high barriers, is enabled by deep tunnelling, with reaction rates enhanced by tens of orders of magnitude. Furthermore, we identify a new path for H recombination that proceeds via multidimensional tunnelling but would have been predicted to be unfeasible by a simple one-dim...
International audienceHydrogen functionalization of graphene by exposure to vibrationally excited H2...
International audienceHydrogen functionalization of graphene by exposure to vibrationally excited H2...
Aims. Because of their catalytic properties, interstellar dust grains are crucial to the formation o...
It is commonly believed that it is unfavorable for adsorbed H atoms on carbonaceous surfaces to form...
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...
We study the diffusion of atomic hydrogen (H) on graphene surface using first-principles calculation...
Aims: Because of their catalytic properties, interstellar dust grains are crucial to the formation o...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
Adsorption, Clustering and Reaction of Hydrogen atoms on Graphene - Recent years have witnessed an e...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
The nuclear tunneling crossover temperature (T-c) of hydrogen transfer reactions in supported molecu...
20siHydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is inve...
Interaction of hydrogen atoms with graphitic surfaces is currently subject of intense research activ...
International audienceHydrogen functionalization of graphene by exposure to vibrationally excited H2...
International audienceHydrogen functionalization of graphene by exposure to vibrationally excited H2...
Aims. Because of their catalytic properties, interstellar dust grains are crucial to the formation o...
It is commonly believed that it is unfavorable for adsorbed H atoms on carbonaceous surfaces to form...
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...
We study the diffusion of atomic hydrogen (H) on graphene surface using first-principles calculation...
Aims: Because of their catalytic properties, interstellar dust grains are crucial to the formation o...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
Adsorption, Clustering and Reaction of Hydrogen atoms on Graphene - Recent years have witnessed an e...
Hydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is investig...
The nuclear tunneling crossover temperature (T-c) of hydrogen transfer reactions in supported molecu...
20siHydrogen functionalization of graphene by exposure to vibrationally excited H2 molecules is inve...
Interaction of hydrogen atoms with graphitic surfaces is currently subject of intense research activ...
International audienceHydrogen functionalization of graphene by exposure to vibrationally excited H2...
International audienceHydrogen functionalization of graphene by exposure to vibrationally excited H2...
Aims. Because of their catalytic properties, interstellar dust grains are crucial to the formation o...