Controlling the nanoscale morphology of organic thin films represents a critical challenge in the fabrication of organic (opto)electronic devices. The morphology of the (multicomponent) thin films in turn depends on the mutual orientation of the molecular components and their supramolecular packing on the surface. Here, it is shown how the surface co-assembly of electron-donating and -accepting building blocks can be controlled via (supra)molecular design. Hexa-peri-hexabenzocoronene (HBC) derivatives with multiple hydrogen-bonding (H-bonding) sites were synthesized and their co-assembly with alkyl-substituted perylene tetracarboxy diimide (PDI) was studied using scanning tunneling microscopy (STM) at the solution–graphite interface. STM da...
The incorporation of organic semiconducting materials within solid-state electronic devices provides...
Supramolecular assemblies have a key component with regards to supramolecular electronics, the study...
Well-defined conjugated materials play an important role in organic electronics because of their pre...
Controlling the nanoscale morphology of organic thin films represents a critical challenge in the fa...
Controlling the nanoscale morphology of organic thin films represents a critical challenge in the fa...
Molecular organization plays an essential role in organic semiconductors since it determines the ext...
Molecules adsorbed on surfaces can show fascinating characteristics and properties. In particular th...
Organic charge transfer (CT) complexes obtained by combining molecular electron donors and acceptors...
The development of organic devices with nanoscale features is becoming the focus of intense research...
Organic charge transfer (CT) complexes obtained by combining molecular electron donors and acceptors...
Discrete and multicomponent nanoscale noncovalent assemblies on surfaces featuring polygonal porous ...
Organic based materials forming supramolecular assembly have generated significant interest in many ...
The self-assembly of large organic adsorbates on solid surfaces is driven by subtle energy balances ...
Molecules adsorbed on surfaces can show fascinating characteristics and properties. In particular th...
The spontaneous formation of supramolecular assemblies has been viewed as a potential route to the c...
The incorporation of organic semiconducting materials within solid-state electronic devices provides...
Supramolecular assemblies have a key component with regards to supramolecular electronics, the study...
Well-defined conjugated materials play an important role in organic electronics because of their pre...
Controlling the nanoscale morphology of organic thin films represents a critical challenge in the fa...
Controlling the nanoscale morphology of organic thin films represents a critical challenge in the fa...
Molecular organization plays an essential role in organic semiconductors since it determines the ext...
Molecules adsorbed on surfaces can show fascinating characteristics and properties. In particular th...
Organic charge transfer (CT) complexes obtained by combining molecular electron donors and acceptors...
The development of organic devices with nanoscale features is becoming the focus of intense research...
Organic charge transfer (CT) complexes obtained by combining molecular electron donors and acceptors...
Discrete and multicomponent nanoscale noncovalent assemblies on surfaces featuring polygonal porous ...
Organic based materials forming supramolecular assembly have generated significant interest in many ...
The self-assembly of large organic adsorbates on solid surfaces is driven by subtle energy balances ...
Molecules adsorbed on surfaces can show fascinating characteristics and properties. In particular th...
The spontaneous formation of supramolecular assemblies has been viewed as a potential route to the c...
The incorporation of organic semiconducting materials within solid-state electronic devices provides...
Supramolecular assemblies have a key component with regards to supramolecular electronics, the study...
Well-defined conjugated materials play an important role in organic electronics because of their pre...