While graphene has attracted significant attention from the research community due to its high charge carrier mobility, important issues remain unresolved that prevent its widespread use in technologically significant applications such as digital electronics. For example, the chemical inertness of graphene hinders integration with other materials, and the lack of a bandgap implies poor switching characteristics in transistors. The formation of ordered organic monolayers on graphene has the potential to address each of these challenges. In particular, functional groups incorporated into the constituent molecules enable tailored chemical reactivity, while molecular-scale ordering within the monolayer provides sub-2 nm templates with the poten...
The rise of graphene has attracted great interest in low-dimensional materials (0D, 1D and 2D). A jo...
Organic-graphene system has emerged as a new platform for various applications such as flexible orga...
Nature employs self-assembly to fabricate the most complex molecularly precise machinery known to ma...
Graphene, a two-dimensional allotrope of carbon, has, since its discovery in 2004, taken the world o...
Molecular-scale control over the integration of disparate materials on graphene is a critical step i...
International audienceWe report the first fluorescent molecular self-assembly on graphene. The quenc...
Recent trends in materials science have exploited noncovalent monolayer chemistries to modulate the ...
The formation of ordered arrays of molecules via self-assembly is a rapid, scalable route towards th...
Self-assembly of organic molecules could be a feasible bottom-up approach to build nanostructures su...
One of the suggested ways of controlling the electronic properties of graphene is to establish a per...
| openaire: EC/FP7/278698/EU//PRECISE-NANOWe report on molecular self-assembly employing a host-gues...
cited By 15International audienceScanning Tunneling Microscopy (STM), Scanning Tunneling Spectroscop...
van der Waals (vdW) epitaxy of ultrathin organic films on two-dimensional (2D) atomic crystals has b...
Self-assembled monolayers of chrysene and indene on graphite have been observed and characterized in...
Defining pathways to assemble long-range-ordered 2D nanostructures of specifically designed organic ...
The rise of graphene has attracted great interest in low-dimensional materials (0D, 1D and 2D). A jo...
Organic-graphene system has emerged as a new platform for various applications such as flexible orga...
Nature employs self-assembly to fabricate the most complex molecularly precise machinery known to ma...
Graphene, a two-dimensional allotrope of carbon, has, since its discovery in 2004, taken the world o...
Molecular-scale control over the integration of disparate materials on graphene is a critical step i...
International audienceWe report the first fluorescent molecular self-assembly on graphene. The quenc...
Recent trends in materials science have exploited noncovalent monolayer chemistries to modulate the ...
The formation of ordered arrays of molecules via self-assembly is a rapid, scalable route towards th...
Self-assembly of organic molecules could be a feasible bottom-up approach to build nanostructures su...
One of the suggested ways of controlling the electronic properties of graphene is to establish a per...
| openaire: EC/FP7/278698/EU//PRECISE-NANOWe report on molecular self-assembly employing a host-gues...
cited By 15International audienceScanning Tunneling Microscopy (STM), Scanning Tunneling Spectroscop...
van der Waals (vdW) epitaxy of ultrathin organic films on two-dimensional (2D) atomic crystals has b...
Self-assembled monolayers of chrysene and indene on graphite have been observed and characterized in...
Defining pathways to assemble long-range-ordered 2D nanostructures of specifically designed organic ...
The rise of graphene has attracted great interest in low-dimensional materials (0D, 1D and 2D). A jo...
Organic-graphene system has emerged as a new platform for various applications such as flexible orga...
Nature employs self-assembly to fabricate the most complex molecularly precise machinery known to ma...