The morphology of molecular aggregates at interfaces impacts strongly on the functional properties of nanoscale systems for electronic and optoelectronic applications. The packing of organic materials on surfaces, in turn, depends on several factors, including the nature and structure of the substrate, the fabrication conditions, and processing. In this work, we perform an integrated computational/experimental study to unravel the details of the molecular aggregation morphology at the interface between two organic materials. Namely, we address the morphology of aggregates of N,N′-ditridecylperylene-3,4,9,10-tetracarboxylic diimide (PTCDI-C13), a prototypical n-type organic semiconductor at the interface with poly-methyl metacrylate (PMMA), ...
Organic semiconductor interfaces are promising materials for use in next-generation electronic and o...
We report on the self-assembly and the electrical characterization of bicomponent films consisting o...
Progress in the development of advanced and multi-functional materials for organic and hybrid electr...
The morphology of molecular aggregates at interfaces impacts strongly on the functional properties o...
The morphology of layered aggregates of <i>N</i>,<i>N</i>′-ditridecylperylene-3,4,9,10-tetracarboxyl...
The relationship between molecular packing and charge transport properties in bidimensional crystall...
none3noThe morphology of layered aggregates of N,N'-ditridecylperylene-3,4,9,10-tetracarboxylic diim...
The relationship between molecular packing and charge transport properties in bidimensional crystall...
<p>The morphology of layered aggregates of <em>N</em>,<em>N</em>′-ditridecylperylene-3,4,9,10-tetrac...
The controlled 3D nanostructuration of molecular layers of the semiconducting molecules C22H14 (pent...
The properties of organic electronic materials in the solid-state are determined not only by those o...
Organic semiconductors have received increasing attention over the last decades as potential alterna...
Establishing the rather complex correlation between the structure and the charge transfer in organic...
The assembly behavior at surfaces of very stiff polyisocyanopeptides (PICs) functionalized with semi...
Understanding the interaction of molecules and metal surfaces is of paramount importance in research...
Organic semiconductor interfaces are promising materials for use in next-generation electronic and o...
We report on the self-assembly and the electrical characterization of bicomponent films consisting o...
Progress in the development of advanced and multi-functional materials for organic and hybrid electr...
The morphology of molecular aggregates at interfaces impacts strongly on the functional properties o...
The morphology of layered aggregates of <i>N</i>,<i>N</i>′-ditridecylperylene-3,4,9,10-tetracarboxyl...
The relationship between molecular packing and charge transport properties in bidimensional crystall...
none3noThe morphology of layered aggregates of N,N'-ditridecylperylene-3,4,9,10-tetracarboxylic diim...
The relationship between molecular packing and charge transport properties in bidimensional crystall...
<p>The morphology of layered aggregates of <em>N</em>,<em>N</em>′-ditridecylperylene-3,4,9,10-tetrac...
The controlled 3D nanostructuration of molecular layers of the semiconducting molecules C22H14 (pent...
The properties of organic electronic materials in the solid-state are determined not only by those o...
Organic semiconductors have received increasing attention over the last decades as potential alterna...
Establishing the rather complex correlation between the structure and the charge transfer in organic...
The assembly behavior at surfaces of very stiff polyisocyanopeptides (PICs) functionalized with semi...
Understanding the interaction of molecules and metal surfaces is of paramount importance in research...
Organic semiconductor interfaces are promising materials for use in next-generation electronic and o...
We report on the self-assembly and the electrical characterization of bicomponent films consisting o...
Progress in the development of advanced and multi-functional materials for organic and hybrid electr...