By means of scanning tunneling microscopy, we have explored the two-dimensional self-assembly of functional bicomponent hydrogen-bonding dye systems, leading to well-defined patterns, different from those of the individual components, and providing design rules to immobilize multicomponent systems at the liq.-solid interface
Supramolecular two-dimensional engineering epitomizes the design of complex molecular architectures ...
Shrinking devices to the nanoscale, while still maintaining accurate control on their structure and ...
This article discusses different approaches to build up supramolecular nanoarchitectures on surfaces...
By means of scanning tunneling microscopy, we have explored the two-dimensional self-assembly of fun...
Supramolecular chemistry has a very large impact on chemistry of current interest and the use of non...
Discrete and multicomponent nanoscale noncovalent assemblies on surfaces featuring polygonal porous ...
Organic based materials forming supramolecular assembly have generated significant interest in many ...
Tailoring the architecture of porous two-dimensional networks formed by molecules is essential for d...
Tailoring the architecture of porous two-dimensional networks formed by molecules is essential for d...
We report a joint computational and experimental study on the concentration-dependent self-assembly ...
International audienceThe self-assembly of a Ni(II)−salen-derived complex bearing benzoate groups is...
Tailoring the architecture of porous two-dimensional networks formed by molecules is essential for d...
Tailoring the architecture of porous two-dimensional networks formed by molecules is essential for d...
The self-assembly of a Ni(II)–salen-derived complex bearing benzoate groups is investigated using s...
International audienceIn order to create surface patterns, planar molecules with extended pi-conjuga...
Supramolecular two-dimensional engineering epitomizes the design of complex molecular architectures ...
Shrinking devices to the nanoscale, while still maintaining accurate control on their structure and ...
This article discusses different approaches to build up supramolecular nanoarchitectures on surfaces...
By means of scanning tunneling microscopy, we have explored the two-dimensional self-assembly of fun...
Supramolecular chemistry has a very large impact on chemistry of current interest and the use of non...
Discrete and multicomponent nanoscale noncovalent assemblies on surfaces featuring polygonal porous ...
Organic based materials forming supramolecular assembly have generated significant interest in many ...
Tailoring the architecture of porous two-dimensional networks formed by molecules is essential for d...
Tailoring the architecture of porous two-dimensional networks formed by molecules is essential for d...
We report a joint computational and experimental study on the concentration-dependent self-assembly ...
International audienceThe self-assembly of a Ni(II)−salen-derived complex bearing benzoate groups is...
Tailoring the architecture of porous two-dimensional networks formed by molecules is essential for d...
Tailoring the architecture of porous two-dimensional networks formed by molecules is essential for d...
The self-assembly of a Ni(II)–salen-derived complex bearing benzoate groups is investigated using s...
International audienceIn order to create surface patterns, planar molecules with extended pi-conjuga...
Supramolecular two-dimensional engineering epitomizes the design of complex molecular architectures ...
Shrinking devices to the nanoscale, while still maintaining accurate control on their structure and ...
This article discusses different approaches to build up supramolecular nanoarchitectures on surfaces...