We theoretically investigate, by means of atomistic molecular dynamics simulations employing a tailored and benchmarked force field, the nanoscale organization of cycloparaphenylene molecules when physisorbed on a graphite surface. The landing of a single molecule is first considered, to progressively deposit more molecules to finally reach the full coverage of the surface. This protocol allows to study, consequently, the mechanism and structural pattern of their self-aggregation. The interfacial morphologies obtained are then analyzed in terms of the electronic coupling between neighboring molecules, allowing thus to provide information about the associated charge-transfer phenomena which could take place in these highly organized monomole...
International audienceNano-porous two-dimensional molecular crystals, self-assembled on atomically f...
International audienceNano-porous two-dimensional molecular crystals, self-assembled on atomically f...
International audienceNano-porous two-dimensional molecular crystals, self-assembled on atomically f...
The nanoscale organization of cycloparaphenylene molecules when physisorbed on a graphite surface is...
The nanoscale organization of cycloparaphenylene molecules when physisorbed on a graphite surface is...
The nanoscale organization of cycloparaphenylene molecules when physisorbed on a graphite surface is...
The nanoscale organization of cycloparaphenylene molecules when physisorbed on a graphite surface is...
We theoretically study, by means of dispersion-corrected and cost-effective methods, the strength of...
International audienceWe report here the Molecular Dynamic (MD) simulations of a series of self-asse...
International audienceWe report here the Molecular Dynamic (MD) simulations of a series of self-asse...
International audienceWe report here the Molecular Dynamic (MD) simulations of a series of self-asse...
We investigate the atomic and electronic structures of cyclooctatetraene (COT) molecules on graphene...
Discotic polyaromatic hydrocarbons constitute a very promising materials family for organic electron...
We investigate the atomic and electronic structures of cyclooctatetraene (COT) molecules on graphene...
We investigate the atomic and electronic structures of cyclooctatetraene (COT) molecules on graphene...
International audienceNano-porous two-dimensional molecular crystals, self-assembled on atomically f...
International audienceNano-porous two-dimensional molecular crystals, self-assembled on atomically f...
International audienceNano-porous two-dimensional molecular crystals, self-assembled on atomically f...
The nanoscale organization of cycloparaphenylene molecules when physisorbed on a graphite surface is...
The nanoscale organization of cycloparaphenylene molecules when physisorbed on a graphite surface is...
The nanoscale organization of cycloparaphenylene molecules when physisorbed on a graphite surface is...
The nanoscale organization of cycloparaphenylene molecules when physisorbed on a graphite surface is...
We theoretically study, by means of dispersion-corrected and cost-effective methods, the strength of...
International audienceWe report here the Molecular Dynamic (MD) simulations of a series of self-asse...
International audienceWe report here the Molecular Dynamic (MD) simulations of a series of self-asse...
International audienceWe report here the Molecular Dynamic (MD) simulations of a series of self-asse...
We investigate the atomic and electronic structures of cyclooctatetraene (COT) molecules on graphene...
Discotic polyaromatic hydrocarbons constitute a very promising materials family for organic electron...
We investigate the atomic and electronic structures of cyclooctatetraene (COT) molecules on graphene...
We investigate the atomic and electronic structures of cyclooctatetraene (COT) molecules on graphene...
International audienceNano-porous two-dimensional molecular crystals, self-assembled on atomically f...
International audienceNano-porous two-dimensional molecular crystals, self-assembled on atomically f...
International audienceNano-porous two-dimensional molecular crystals, self-assembled on atomically f...