International audienceHere is reported a novel strategy of non-covalent functionalization of graphene to avoid the electronic coupling between this semi-metal and directly adsorbed optically active molecules. Graphene-confined supramolecular host–guest recognition is used to elaborate an emitting hybrid platform. It is shown that the cavities of an on-monolayer graphene nanoporous self-assembled network are able to trap zinc phthalocyanine molecules coordinated to an emitting axial ligand. As a result, the emission of the hybrid system exhibits the same features as the isolated molecular emitter, demonstrating that the fluorescence is not quenched by graphene and that the well-controlled inter-chromophore distance prevents any interaction b...
This work was aimed at exploring supramolecular interactions as a tool in the fields of host-guest c...
2D epitaxial nanostructures formed by functional molecules at interfaces/surfaces have attracted con...
International audienceWe propose a new approach to improving photodynamic therapy (PDT) by transport...
International audienceUsing supramolecular chemistry to functionalise graphene for photonic applicat...
International audienceWe report the first fluorescent molecular self-assembly on graphene. The quenc...
Novel pyrene-derivatized zinc and cobalt phthalocyanines (Pcs) and porphyrins (Ps) were immobilized ...
| openaire: EC/FP7/278698/EU//PRECISE-NANOWe report on molecular self-assembly employing a host-gues...
Graphene quantum dots (GQDs) and zinc phthalocyanines interactions in different modes (covalent and ...
This study reports on the design of novel nanoconjugates of graphene quantum dots (GQDs) and tetra o...
Supramolecular chemistry has been an emerging field over the last twenty years with host-guest inclu...
Graphene is the material elected to study molecules and monolayers at the molecular scale due to its...
Graphene, a two-dimensional allotrope of carbon, has, since its discovery in 2004, taken the world o...
Graphene is a newly available conductive material ideally suited for forming well-defined interfaces...
Graphene and other 2d materials have shown great promise for their ability to sense chemicals. This ...
This work was aimed at exploring supramolecular interactions as a tool in the fields of host-guest c...
2D epitaxial nanostructures formed by functional molecules at interfaces/surfaces have attracted con...
International audienceWe propose a new approach to improving photodynamic therapy (PDT) by transport...
International audienceUsing supramolecular chemistry to functionalise graphene for photonic applicat...
International audienceWe report the first fluorescent molecular self-assembly on graphene. The quenc...
Novel pyrene-derivatized zinc and cobalt phthalocyanines (Pcs) and porphyrins (Ps) were immobilized ...
| openaire: EC/FP7/278698/EU//PRECISE-NANOWe report on molecular self-assembly employing a host-gues...
Graphene quantum dots (GQDs) and zinc phthalocyanines interactions in different modes (covalent and ...
This study reports on the design of novel nanoconjugates of graphene quantum dots (GQDs) and tetra o...
Supramolecular chemistry has been an emerging field over the last twenty years with host-guest inclu...
Graphene is the material elected to study molecules and monolayers at the molecular scale due to its...
Graphene, a two-dimensional allotrope of carbon, has, since its discovery in 2004, taken the world o...
Graphene is a newly available conductive material ideally suited for forming well-defined interfaces...
Graphene and other 2d materials have shown great promise for their ability to sense chemicals. This ...
This work was aimed at exploring supramolecular interactions as a tool in the fields of host-guest c...
2D epitaxial nanostructures formed by functional molecules at interfaces/surfaces have attracted con...
International audienceWe propose a new approach to improving photodynamic therapy (PDT) by transport...