The performance of solution-processed solar cells strongly depends on the geometrical structure and roughness of the photovoltaic layers formed during film drying. During the drying process, the interplay of crystallization and liquid-liquid demixing leads to structure formation on the nano- and microscale and to the final rough film. In order to better understand how the film structure can be improved by process engineering, we aim at theoretically investigating these systems by means of phase-field simulations. We introduce an evaporation model based on the Cahn-Hilliard equation for the evolution of the fluid concentrations coupled to the Allen-Cahn equation for the liquid-vapour phase transformation. We demonstrate its ability to match ...
In this paper, we develop numerical, theoretical and experimental analyses of the different morpholo...
We theoretically study the impact of solvent evaporation on the dynamics of isothermal phase separat...
Stimulated by experimental evidence in the field of solution-born thin films, we study the morpholog...
The performance of solution-processed solar cells strongly depends on the geometrical structure and ...
In numerous solution-processed thin films, a complex morphology resulting from liquid–liquid phase s...
In numerous solution-processed thin films, a complex morphology resultingfrom liquid–liquid phase se...
In solution processing of thin films, the material layer is deposited from a solution composed of se...
In solution processing of thin films, the material layer is deposited from a solution composed of se...
Evaporating solvent-polymer mixtures play an important role in a number of modern industrial applica...
The performance of organic solar cells strongly depends on the bulk-heterojunction (BHJ) morphology ...
During spin coating of the photoactive layer of a bulk heterojunction organic solar cell, phase sepa...
During spin coating of the photoactive layer of a bulk heterojunction organic solar cell, phase sepa...
During spin coating of the photoactive layer of a bulk heterojunction organic solar cell, phase sepa...
We present computer simulations of the phase separation dynamics in thin films of polymer blend solu...
In this paper, we develop numerical, theoretical and experimental analyses of the different morpholo...
We theoretically study the impact of solvent evaporation on the dynamics of isothermal phase separat...
Stimulated by experimental evidence in the field of solution-born thin films, we study the morpholog...
The performance of solution-processed solar cells strongly depends on the geometrical structure and ...
In numerous solution-processed thin films, a complex morphology resulting from liquid–liquid phase s...
In numerous solution-processed thin films, a complex morphology resultingfrom liquid–liquid phase se...
In solution processing of thin films, the material layer is deposited from a solution composed of se...
In solution processing of thin films, the material layer is deposited from a solution composed of se...
Evaporating solvent-polymer mixtures play an important role in a number of modern industrial applica...
The performance of organic solar cells strongly depends on the bulk-heterojunction (BHJ) morphology ...
During spin coating of the photoactive layer of a bulk heterojunction organic solar cell, phase sepa...
During spin coating of the photoactive layer of a bulk heterojunction organic solar cell, phase sepa...
During spin coating of the photoactive layer of a bulk heterojunction organic solar cell, phase sepa...
We present computer simulations of the phase separation dynamics in thin films of polymer blend solu...
In this paper, we develop numerical, theoretical and experimental analyses of the different morpholo...
We theoretically study the impact of solvent evaporation on the dynamics of isothermal phase separat...
Stimulated by experimental evidence in the field of solution-born thin films, we study the morpholog...