Functionalization and modification of graphene at the nanometer scale is desirable for many applications. Supramolecular assembly offers an attractive approach in this regard, as many organic molecules form well-defined patterns on surfaces such as graphite <i>via</i> physisorption. Here we show that ordered porous supramolecular networks with different pore sizes can be readily fabricated on different graphene substrates <i>via</i> self-assembly of dehydrobenzo[12]annulene (DBA) derivatives at the interface between graphene and an organic liquid. Molecular resolution scanning tunneling microscopy (STM) and atomic force microscopy (AFM) investigations reveal that the extended honeycomb networks are highly flexible and that they follow the t...
To demonstrate key roles of multiple interactions between multiple components and multiple phases in...
We present here the construction of a self-assembled two-dimensional (2D) porous monolayer bearing a...
Tailoring the architecture of porous two-dimensional networks formed by molecules is essential for d...
We present here the periodic functionalization of a two-dimensional (2D) porous molecular network us...
International audienceUsing supramolecular chemistry to functionalise graphene for photonic applicat...
The self-assembly of multicomponent networks at the liquid-solid interface between Au(111) or highly...
The self-assembly of multicomponent networks at the liquid–solid interface between Au(111) or highly...
Supramolecular assemblies have a key component with regards to supramolecular electronics, the study...
| openaire: EC/FP7/278698/EU//PRECISE-NANOWe report on molecular self-assembly employing a host-gues...
Host−guest chemistry in two-dimensional (2D) space, that is, physisorbed monolayers of a single atom...
The formation of ordered arrays of molecules via self-assembly is a rapid, scalable route towards th...
International audience2D supramolecular self-assembly has emerged as a powerful tool in nanoscience ...
Graphene, a two-dimensional allotrope of carbon, has, since its discovery in 2004, taken the world o...
We present here the construction of self-assembled two-dimensional (2D) molecular networks that cont...
Tailoring the architecture of porous two-dimensional networks formed by molecules is essential for d...
To demonstrate key roles of multiple interactions between multiple components and multiple phases in...
We present here the construction of a self-assembled two-dimensional (2D) porous monolayer bearing a...
Tailoring the architecture of porous two-dimensional networks formed by molecules is essential for d...
We present here the periodic functionalization of a two-dimensional (2D) porous molecular network us...
International audienceUsing supramolecular chemistry to functionalise graphene for photonic applicat...
The self-assembly of multicomponent networks at the liquid-solid interface between Au(111) or highly...
The self-assembly of multicomponent networks at the liquid–solid interface between Au(111) or highly...
Supramolecular assemblies have a key component with regards to supramolecular electronics, the study...
| openaire: EC/FP7/278698/EU//PRECISE-NANOWe report on molecular self-assembly employing a host-gues...
Host−guest chemistry in two-dimensional (2D) space, that is, physisorbed monolayers of a single atom...
The formation of ordered arrays of molecules via self-assembly is a rapid, scalable route towards th...
International audience2D supramolecular self-assembly has emerged as a powerful tool in nanoscience ...
Graphene, a two-dimensional allotrope of carbon, has, since its discovery in 2004, taken the world o...
We present here the construction of self-assembled two-dimensional (2D) molecular networks that cont...
Tailoring the architecture of porous two-dimensional networks formed by molecules is essential for d...
To demonstrate key roles of multiple interactions between multiple components and multiple phases in...
We present here the construction of a self-assembled two-dimensional (2D) porous monolayer bearing a...
Tailoring the architecture of porous two-dimensional networks formed by molecules is essential for d...