The classical and quantum structures of cationic polycyclic aromatic hydrocarbon molecules (benzene, pyrene, coronene, and circumcoronene) coated by helium atoms have been theoretically investigated using a variety of computational methods. Classical shell filling, as determined from global optimization, is generally found to proceed by epitaxial additions on the graphitic surfaces before peripheral closure. From the quantum mechanical perspective provided by path-integral molecular dynamics simulations, vibrational delocalization is found to generally decrease the size of this first solvation shell, but also to give rise to a variety of situations in which the helium atoms are more or less localized depending on their environment, with str...
It has been experimentally observed that water-ice-embedded polycyclic aromatic hydrocarbons (PAHs) ...
Helium adsorbed on C60+ and C70+ exhibits phenomena akin to helium on graphite. Mass spectra suggest...
Although H2 is the simplest and the most abundant molecule in the Universe, its formation in the int...
This work theoretically examines the progressive coating of planar polycyclic aromatic hydrocarbon (...
International audienceThe adsorption of up to ∼ 100 helium atoms on the planar polycyclic aromatic h...
The adsorption of helium on charged hexabenzocoronene (Hbc, C42H18), a planar polycyclic aromatic hy...
Cost Action Molim, Molecules in Motions, CM 1405; University Paris-Est Marne-La-Vallée, France, 27-2...
Under the terms of the Creative Commons Attribution (CC BY) license to their work.Coronene-doped hel...
International audienceSmall organic molecules are thought to provide building blocks for the formati...
The ground and excited state properties of small helium clusters, 4He_N, containing nanoscale (~3-10...
We report the first experimental study of the attachment of multiple foreign atoms to a cationic pol...
International audienceAb initio calculations are used to construct an analytical many-body potential...
The understanding of hydrogen attachment to carbonaceous surfaces is essential to a wide variety of ...
Carbon is both abundant and functionally versatile due to the variability of orbital hybridization o...
12 pages, 7 figuresClusters of polycyclic aromatic hydrocarbon (PAH) molecules are modelled using ex...
It has been experimentally observed that water-ice-embedded polycyclic aromatic hydrocarbons (PAHs) ...
Helium adsorbed on C60+ and C70+ exhibits phenomena akin to helium on graphite. Mass spectra suggest...
Although H2 is the simplest and the most abundant molecule in the Universe, its formation in the int...
This work theoretically examines the progressive coating of planar polycyclic aromatic hydrocarbon (...
International audienceThe adsorption of up to ∼ 100 helium atoms on the planar polycyclic aromatic h...
The adsorption of helium on charged hexabenzocoronene (Hbc, C42H18), a planar polycyclic aromatic hy...
Cost Action Molim, Molecules in Motions, CM 1405; University Paris-Est Marne-La-Vallée, France, 27-2...
Under the terms of the Creative Commons Attribution (CC BY) license to their work.Coronene-doped hel...
International audienceSmall organic molecules are thought to provide building blocks for the formati...
The ground and excited state properties of small helium clusters, 4He_N, containing nanoscale (~3-10...
We report the first experimental study of the attachment of multiple foreign atoms to a cationic pol...
International audienceAb initio calculations are used to construct an analytical many-body potential...
The understanding of hydrogen attachment to carbonaceous surfaces is essential to a wide variety of ...
Carbon is both abundant and functionally versatile due to the variability of orbital hybridization o...
12 pages, 7 figuresClusters of polycyclic aromatic hydrocarbon (PAH) molecules are modelled using ex...
It has been experimentally observed that water-ice-embedded polycyclic aromatic hydrocarbons (PAHs) ...
Helium adsorbed on C60+ and C70+ exhibits phenomena akin to helium on graphite. Mass spectra suggest...
Although H2 is the simplest and the most abundant molecule in the Universe, its formation in the int...