For the purpose of solution-based manufacturing of organic electronic devices, we conducted dip-coating experiments on flat, chemically patterned surfaces. The patterns consisted of long wettable lines of varying width or triangles of different base lengths on an otherwise non-wettable surface. The thickness of the coated film has been measured as a function of pattern dimensions and coating speed. For lines of width comparable to the capillary length, i.e. several millimeters, which were oriented with the long axis parallel to the direction of withdrawal, qualitative agreement has been found with analytical results by Landau and Levich [1], Darhuber et al. [5] and Davis [6]. For narrower lines, quantitative agreement was found. Whereas the...
We studied the selective deposition of a Newtonian liquid on the hydrophilic domains of chemically p...
We characterize the selective deposition of liquid microstructures on chemically heterogeneous surfa...
Dip-coating of a chemically micropatterned surface is an important technique for selective material ...
For the purpose of solution-based manufacturing of organic electronic devices, we conducted dip-coat...
For the purpose of solution-based manufacturing of organic electronic devices, we conducted dip-coat...
For the purpose of solution-based manufacturing of organic electronic devices, we conducted dip-coat...
For the purpose of solution-based manufacturing of organic electronic devices, we conducted dip-coat...
We characterize the selective deposition of liquid microstructures on chemically heterogeneous surfa...
We characterize the selective deposition of liquid microstructures on chemically heterogeneous surfa...
We characterize the selective deposition of liquid microstructures on chemically heterogeneous surfa...
We studied the selective deposition of a Newtonian liquid on the hydrophilic domains of chemically p...
We studied the selective deposition of a Newtonian liquid on the hydrophilic domains of chemically p...
We studied the selective deposition of a Newtonian liquid on the hydrophilic domains of chemically p...
We studied the selective deposition of a Newtonian liquid on the hydrophilic domains of chemically p...
We studied the selective deposition of a Newtonian liquid on the hydrophilic domains of chemically p...
We studied the selective deposition of a Newtonian liquid on the hydrophilic domains of chemically p...
We characterize the selective deposition of liquid microstructures on chemically heterogeneous surfa...
Dip-coating of a chemically micropatterned surface is an important technique for selective material ...
For the purpose of solution-based manufacturing of organic electronic devices, we conducted dip-coat...
For the purpose of solution-based manufacturing of organic electronic devices, we conducted dip-coat...
For the purpose of solution-based manufacturing of organic electronic devices, we conducted dip-coat...
For the purpose of solution-based manufacturing of organic electronic devices, we conducted dip-coat...
We characterize the selective deposition of liquid microstructures on chemically heterogeneous surfa...
We characterize the selective deposition of liquid microstructures on chemically heterogeneous surfa...
We characterize the selective deposition of liquid microstructures on chemically heterogeneous surfa...
We studied the selective deposition of a Newtonian liquid on the hydrophilic domains of chemically p...
We studied the selective deposition of a Newtonian liquid on the hydrophilic domains of chemically p...
We studied the selective deposition of a Newtonian liquid on the hydrophilic domains of chemically p...
We studied the selective deposition of a Newtonian liquid on the hydrophilic domains of chemically p...
We studied the selective deposition of a Newtonian liquid on the hydrophilic domains of chemically p...
We studied the selective deposition of a Newtonian liquid on the hydrophilic domains of chemically p...
We characterize the selective deposition of liquid microstructures on chemically heterogeneous surfa...
Dip-coating of a chemically micropatterned surface is an important technique for selective material ...