In this work, we report the achievement of a homeotropically (or face-on) oriented bilayer formed by a pair of discotic materials designed with specific properties: selective solubility, adjusted transition temperatures, and room temperature hexagonal columnar liquid-crystalline phase. The homeotropic orientation of the bilayer which is only a few hundred nanometers thick is performed by solution-processed deposition followed by thermal annealing in the geometry of open supported films and is evidenced by X-ray scattering. This represents the first proof of principle of an organic heterojunction based on two oriented columnar liquid crystal layers
Nanostructured polymer films with continuous, membrane-spanning pores from polymerizable hexagonal c...
\u3cp\u3eNanostructured polymer films with continuous, membrane-spanning pores from polymerizable he...
We report the achievement of very thin films (thickness of about 50 nm) of thermotropic columnar liq...
Columnar liquid crystals made of discotic molecules derived from aromatic dyes are promising materia...
Columnar liquid crystals made of discotic molecules derived from aromatic dyes are promising materia...
Two key parameters for the performance of an organic photovoltaic cell are the exciton diffusion len...
We report the achievement of ultrathin films (down to 25 nm thick) of thermotropic columnar liquid c...
We report a study of the growth and of the orientation of thin open supported columnar liquid crysta...
7 pagesInternational audienceThe structure and the orientation of thermotropic hexagonal columnar li...
The formation of macroscopic homeotropically aligned open film of columnar liquid crystal (LC) monod...
The structure and the orientation of thermotropic hexagonal columnar liquid crystals are studied by ...
The structure and the orientation of thermotropic hexagonal columnar liquid crystals are studied by ...
The structure and the orientation of thermotropic hexagonal columnar liquid crystals are studied by ...
The structure and the orientation of thermotropic hexagonal columnar liquid crystals are studied by ...
From chemical reactivity to mechanical strength, crystal texture plays a central role in determining...
Nanostructured polymer films with continuous, membrane-spanning pores from polymerizable hexagonal c...
\u3cp\u3eNanostructured polymer films with continuous, membrane-spanning pores from polymerizable he...
We report the achievement of very thin films (thickness of about 50 nm) of thermotropic columnar liq...
Columnar liquid crystals made of discotic molecules derived from aromatic dyes are promising materia...
Columnar liquid crystals made of discotic molecules derived from aromatic dyes are promising materia...
Two key parameters for the performance of an organic photovoltaic cell are the exciton diffusion len...
We report the achievement of ultrathin films (down to 25 nm thick) of thermotropic columnar liquid c...
We report a study of the growth and of the orientation of thin open supported columnar liquid crysta...
7 pagesInternational audienceThe structure and the orientation of thermotropic hexagonal columnar li...
The formation of macroscopic homeotropically aligned open film of columnar liquid crystal (LC) monod...
The structure and the orientation of thermotropic hexagonal columnar liquid crystals are studied by ...
The structure and the orientation of thermotropic hexagonal columnar liquid crystals are studied by ...
The structure and the orientation of thermotropic hexagonal columnar liquid crystals are studied by ...
The structure and the orientation of thermotropic hexagonal columnar liquid crystals are studied by ...
From chemical reactivity to mechanical strength, crystal texture plays a central role in determining...
Nanostructured polymer films with continuous, membrane-spanning pores from polymerizable hexagonal c...
\u3cp\u3eNanostructured polymer films with continuous, membrane-spanning pores from polymerizable he...
We report the achievement of very thin films (thickness of about 50 nm) of thermotropic columnar liq...