The mechanism of the collapse of the superhydrophobic state is elucidated for submerged nanoscale textures forming a three-dimensional interconnected vapor domain. This key issue for the design of nanotextures poses significant simulation challenges as it is characterized by diverse time and length scales. State-of-the-art atomistic rare events simulations are applied for overcoming the long time scales connected with the large free energy barriers. In such interconnected surface cavities wetting starts with the formation of a liquid finger between two pillars. This break of symmetry induces a more gentle bend in the rest of the liquid-vapor interface, which triggers the wetting of the neighboring pillars. This collective mechanism, involvi...
Nanoscale roughness in combination with surface chemistry modification can achieve large liquid slip...
A liquid in contact with a textured surface can be found in two states, Wenzel and Cassie. In the We...
Vapor condensation on solid surfaces plays a crucial role across a wide range of industrial applicat...
The mechanism of the collapse of the superhydrophobic state is elucidated for submerged nanoscale te...
In the present thesis the stability of the superhydrophobic state on submerged nanotextured surfaces...
Superhydrophobicity is connected to the presence of gas pockets within surface asperities. Upon incr...
Despite the early promise of superhydrophobic surfaces, their widespread technological adoption has ...
Despite the early promise of superhydrophobic surfaces, their widespread technological adoption has ...
A liquid droplet placed on a geometrically textured surface may take on a “suspended” state, in whic...
Although realizing dewetting transitions of droplets spontaneously on solid textured surfaces is qui...
A liquid in contact with a textured surface can be found in two states, Wenzel and Cassie. In the We...
A liquid in contact with a textured surface can be found in two states, Wenzel and Cassie. In the We...
Nanoscale roughness in combination with surface chemistry modification can achieve large liquid slip...
Nanoscale roughness in combination with surface chemistry modification can achieve large liquid slip...
Hydrophobic (nano)textured surfaces, also known as superhydrophobic surfaces, have a wide range of t...
Nanoscale roughness in combination with surface chemistry modification can achieve large liquid slip...
A liquid in contact with a textured surface can be found in two states, Wenzel and Cassie. In the We...
Vapor condensation on solid surfaces plays a crucial role across a wide range of industrial applicat...
The mechanism of the collapse of the superhydrophobic state is elucidated for submerged nanoscale te...
In the present thesis the stability of the superhydrophobic state on submerged nanotextured surfaces...
Superhydrophobicity is connected to the presence of gas pockets within surface asperities. Upon incr...
Despite the early promise of superhydrophobic surfaces, their widespread technological adoption has ...
Despite the early promise of superhydrophobic surfaces, their widespread technological adoption has ...
A liquid droplet placed on a geometrically textured surface may take on a “suspended” state, in whic...
Although realizing dewetting transitions of droplets spontaneously on solid textured surfaces is qui...
A liquid in contact with a textured surface can be found in two states, Wenzel and Cassie. In the We...
A liquid in contact with a textured surface can be found in two states, Wenzel and Cassie. In the We...
Nanoscale roughness in combination with surface chemistry modification can achieve large liquid slip...
Nanoscale roughness in combination with surface chemistry modification can achieve large liquid slip...
Hydrophobic (nano)textured surfaces, also known as superhydrophobic surfaces, have a wide range of t...
Nanoscale roughness in combination with surface chemistry modification can achieve large liquid slip...
A liquid in contact with a textured surface can be found in two states, Wenzel and Cassie. In the We...
Vapor condensation on solid surfaces plays a crucial role across a wide range of industrial applicat...