We study the equilibrium conformations of liquid microstructures on flat but chemically heterogeneous substrates using energy minimization computations. The surface patterns, which establish regions of different surface energy, induce deformations of the liquid–solid contact line. Depending on the geometry, these deformations either promote or impede capillary breakup and bulge formation. The contact angles of the liquid on the hydrophilic and hydrophobic regions, as well as the pattern geometry and volume of liquid deposited, strongly affect the equilibrium shapes. Moreover, due to the small scale of the liquid features, the presence of chemical or topological surface defects significantly influence the final liquid shapes. Preliminary exp...
Using a combination of experiment and simulations, we have studied the equilibrium shapes of liquid ...
Using a combination of experiment and simulations, we have studied the equilibrium shapes of liquid ...
Dip-coating of a chemically micropatterned surface is an important technique for selective material ...
We characterize the selective deposition of liquid microstructures on chemically heterogeneous surfa...
We study the equilibrium conformations of liquid microstructures on flat but chemically heterogeneou...
We study the equilibrium conformations of liquid microstructures on flat but chemically heterogeneou...
We study the equilibrium conformations of liquid microstructures on flat but chemically heterogeneou...
We study the equilibrium conformations of liquid microstructures on flat but chemically heterogeneou...
We study the equilibrium conformations of liquid microstructures on flat but chemically heterogeneou...
We study the equilibrium conformations of liquid microstructures on flat but chemically heterogeneou...
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...
Using a combination of experiment and simulations, we have studied the equilibrium shapes of liquid ...
Using a combination of experiment and simulations, we have studied the equilibrium shapes of liquid ...
Using a combination of experiment and simulations, we have studied the equilibrium shapes of liquid ...
Using a combination of experiment and simulations, we have studied the equilibrium shapes of liquid ...
Dip-coating of a chemically micropatterned surface is an important technique for selective material ...
We characterize the selective deposition of liquid microstructures on chemically heterogeneous surfa...
We study the equilibrium conformations of liquid microstructures on flat but chemically heterogeneou...
We study the equilibrium conformations of liquid microstructures on flat but chemically heterogeneou...
We study the equilibrium conformations of liquid microstructures on flat but chemically heterogeneou...
We study the equilibrium conformations of liquid microstructures on flat but chemically heterogeneou...
We study the equilibrium conformations of liquid microstructures on flat but chemically heterogeneou...
We study the equilibrium conformations of liquid microstructures on flat but chemically heterogeneou...
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...
Using a combination of experiment and simulations, we have studied the equilibrium shapes of liquid ...
Using a combination of experiment and simulations, we have studied the equilibrium shapes of liquid ...
Using a combination of experiment and simulations, we have studied the equilibrium shapes of liquid ...
Using a combination of experiment and simulations, we have studied the equilibrium shapes of liquid ...
Dip-coating of a chemically micropatterned surface is an important technique for selective material ...