International audienceUsing supramolecular chemistry to functionalise graphene for photonic applications is a challenging issue due to graphene’s capacity to quench any emission from molecules adsorbed on its surface. To overcome this problem, we propose the use of molecular dyads to form ordered self- assemblies on graphene-like substrates. These dyads are designed to reduce surface quenching by positioning the emissive component out-of-the plane of the substrate. We use a zinc porphyrin and a phthalocyanine as molecular pedestals to immobilise the dyads onto the graphene thanks to a nanoporous network; and a perylenetetracarboxylic diimide, as the emissive component. This approach has been recently reported, however; we have found that th...
One of the suggested ways of controlling the electronic properties of graphene is to establish a per...
Abstract Polymeric structures based on porphyrin units exhibit a range of complex properties, such a...
none16siNome progetto: MOLARNETTuning the intermolecular interactions among suitably designed molecu...
International audienceUsing supramolecular chemistry to functionalise graphene for photonic applicat...
International audienceHere is reported a novel strategy of non-covalent functionalization of graphen...
The formation of ordered arrays of molecules via self-assembly is a rapid, scalable route towards th...
Understanding how molecules interact to form large-scale hierarchical structures on surfaces holds p...
Functionalization and modification of graphene at the nanometer scale is desirable for many applicat...
International audienceWe report the first fluorescent molecular self-assembly on graphene. The quenc...
Graphene, a two-dimensional allotrope of carbon, has, since its discovery in 2004, taken the world o...
| openaire: EC/FP7/278698/EU//PRECISE-NANOWe report on molecular self-assembly employing a host-gues...
The spontaneous formation of supramolecular assemblies has been viewed as a potential route to the c...
Understanding how molecules interact to form large-scale hierarchical structures on surfaces holds p...
Manipulation of nanoscale objects using molecular self-assembly is a potent tool to achieve large sc...
Discrete and multicomponent nanoscale noncovalent assemblies on surfaces featuring polygonal porous ...
One of the suggested ways of controlling the electronic properties of graphene is to establish a per...
Abstract Polymeric structures based on porphyrin units exhibit a range of complex properties, such a...
none16siNome progetto: MOLARNETTuning the intermolecular interactions among suitably designed molecu...
International audienceUsing supramolecular chemistry to functionalise graphene for photonic applicat...
International audienceHere is reported a novel strategy of non-covalent functionalization of graphen...
The formation of ordered arrays of molecules via self-assembly is a rapid, scalable route towards th...
Understanding how molecules interact to form large-scale hierarchical structures on surfaces holds p...
Functionalization and modification of graphene at the nanometer scale is desirable for many applicat...
International audienceWe report the first fluorescent molecular self-assembly on graphene. The quenc...
Graphene, a two-dimensional allotrope of carbon, has, since its discovery in 2004, taken the world o...
| openaire: EC/FP7/278698/EU//PRECISE-NANOWe report on molecular self-assembly employing a host-gues...
The spontaneous formation of supramolecular assemblies has been viewed as a potential route to the c...
Understanding how molecules interact to form large-scale hierarchical structures on surfaces holds p...
Manipulation of nanoscale objects using molecular self-assembly is a potent tool to achieve large sc...
Discrete and multicomponent nanoscale noncovalent assemblies on surfaces featuring polygonal porous ...
One of the suggested ways of controlling the electronic properties of graphene is to establish a per...
Abstract Polymeric structures based on porphyrin units exhibit a range of complex properties, such a...
none16siNome progetto: MOLARNETTuning the intermolecular interactions among suitably designed molecu...