The incorporation of organic semiconducting materials within solid-state electronic devices provides a potential route to highly efficient photovoltaics, transistors, and light emitting diodes. Key to the realisation of such devices is efficient intramolecular charge transport within molecular species, as well as intermolecular/interdomain transport, which necessitates highly ordered supramolecular domains. The on-surface synthesis of polymeric organic materials (incorporating donor and/or acceptor moieties) is one pathway towards the production of highly ordered molecular domains. Here we study the formation of a polymer based upon a diketopyrrolopyrrole (DPP) monomer unit, possessing aryl-halide groups to facilitate on-surface covalent co...
We report a solution-processable π-conjugated molecular building block (denoted as PhDPP) consisting...
Resumen del póster presentado a la XXXVIII Reunión Bienal de la Real Sociedad Española de Química, c...
The tunable properties of molecular materials place them among the favorites for a variety of future...
The incorporation of organic semiconducting materials within solid-state electronic devices provides...
The present thesis is focused on the rational design of Diketopyrrolopyrrole based π- conjugated pol...
The nanostructure of bulk heterojunction in an organic solar cell dominating the electron transport ...
Molecular self-assembly, a promising bottom-up strategy for nanofabrication of functional devices, u...
Organic molecules with extended -conjugation can display unusual electronic properties, traditionall...
The development of organic devices with nanoscale features is becoming the focus of intense research...
Self-assembled monolayers and surface-initiated polymer, or polymer brushes, have attracted attentio...
Well-defined conjugated materials play an important role in organic electronics because of their pre...
The primary role of substituted side chains in organic semiconductors is to increase their solubilit...
As a versatile class of semiconductors, diketopyrrolopyrrole (DPP)-based conjugated polymers are wel...
On-surface polymerization is a promising technique to prepare organic functional nanomaterials that ...
Unlike inorganic semiconductors, the molecular packing and nanoscale morphology of conjugated polyme...
We report a solution-processable π-conjugated molecular building block (denoted as PhDPP) consisting...
Resumen del póster presentado a la XXXVIII Reunión Bienal de la Real Sociedad Española de Química, c...
The tunable properties of molecular materials place them among the favorites for a variety of future...
The incorporation of organic semiconducting materials within solid-state electronic devices provides...
The present thesis is focused on the rational design of Diketopyrrolopyrrole based π- conjugated pol...
The nanostructure of bulk heterojunction in an organic solar cell dominating the electron transport ...
Molecular self-assembly, a promising bottom-up strategy for nanofabrication of functional devices, u...
Organic molecules with extended -conjugation can display unusual electronic properties, traditionall...
The development of organic devices with nanoscale features is becoming the focus of intense research...
Self-assembled monolayers and surface-initiated polymer, or polymer brushes, have attracted attentio...
Well-defined conjugated materials play an important role in organic electronics because of their pre...
The primary role of substituted side chains in organic semiconductors is to increase their solubilit...
As a versatile class of semiconductors, diketopyrrolopyrrole (DPP)-based conjugated polymers are wel...
On-surface polymerization is a promising technique to prepare organic functional nanomaterials that ...
Unlike inorganic semiconductors, the molecular packing and nanoscale morphology of conjugated polyme...
We report a solution-processable π-conjugated molecular building block (denoted as PhDPP) consisting...
Resumen del póster presentado a la XXXVIII Reunión Bienal de la Real Sociedad Española de Química, c...
The tunable properties of molecular materials place them among the favorites for a variety of future...