We report on the self-assembly and the electrical characterization of bicomponent films consisting of an organic semiconducting small molecule blended with a rigid polymeric scaffold functionalized in the side chains with monomeric units of the same molecule. The molecule and polymer are a perylenebls(dicarboxlmlde) monomer (M-PDI) and a perylene-bls(dicarboxlmlde)- functionalized poly(lsocyanopeptlde) (P-PDI), which have been codeposited on SIOx and mica substrates from solution. These bicomponent films have been characterized by atomic force microscopy (AFM) and Kelvin probe force microscopy (KPFM), revealing the relationship between architecture and function for various supramolecular nanocrystalline arrangements at a nanometer spatial r...
The assembly behavior at surfaces of very stiff polyisocyanopeptides (PICs) functionalized with semi...
The need to improve the performance of electronic devices based on organic materials has been at the...
Control of thin film morphology by self-assembly of, respectively, p-type oligo(p-phenylenevinylene)...
We report on the self-assembly and the electrical characterization of bicomponent films consisting o...
We report on the self-assembly and the electrical characterization of bicomponent films consisting ...
The physicochemical properties of organic (multi)component films for optoelectronic applications dep...
The physicochemical properties of organic (multi)component films for optoelectronic applications dep...
The physicochemical properties of organic (multi)component films for optoelectronic applications dep...
We have investigated the potential of polymers containing precisely spaced side-branches for thin fi...
The electronic transport properties of stacks of perylene-bis(dicarboximide) (PDI) chromophores, cov...
We describe a Kelvin Probe Force Microscopy (KPFM) study on the morphological and electronic propert...
Two main classes of semiconducting molecules are commonly used for opto-electronic applications: pol...
Semiconducting polymers and small-molecules can be readily incorporated into electronic devices such...
We describe a Kelvin Probe Force Microscopy (KPFM) study on the morphological and electronic propert...
The controlled assembly of the prototypical n-type organic semiconductor N, N'-1H, 1H-perfluorobutyl...
The assembly behavior at surfaces of very stiff polyisocyanopeptides (PICs) functionalized with semi...
The need to improve the performance of electronic devices based on organic materials has been at the...
Control of thin film morphology by self-assembly of, respectively, p-type oligo(p-phenylenevinylene)...
We report on the self-assembly and the electrical characterization of bicomponent films consisting o...
We report on the self-assembly and the electrical characterization of bicomponent films consisting ...
The physicochemical properties of organic (multi)component films for optoelectronic applications dep...
The physicochemical properties of organic (multi)component films for optoelectronic applications dep...
The physicochemical properties of organic (multi)component films for optoelectronic applications dep...
We have investigated the potential of polymers containing precisely spaced side-branches for thin fi...
The electronic transport properties of stacks of perylene-bis(dicarboximide) (PDI) chromophores, cov...
We describe a Kelvin Probe Force Microscopy (KPFM) study on the morphological and electronic propert...
Two main classes of semiconducting molecules are commonly used for opto-electronic applications: pol...
Semiconducting polymers and small-molecules can be readily incorporated into electronic devices such...
We describe a Kelvin Probe Force Microscopy (KPFM) study on the morphological and electronic propert...
The controlled assembly of the prototypical n-type organic semiconductor N, N'-1H, 1H-perfluorobutyl...
The assembly behavior at surfaces of very stiff polyisocyanopeptides (PICs) functionalized with semi...
The need to improve the performance of electronic devices based on organic materials has been at the...
Control of thin film morphology by self-assembly of, respectively, p-type oligo(p-phenylenevinylene)...