Superhydrophobicity is connected to the presence of gas pockets within surface asperities. Upon increasing the pressure this 'suspended' state may collapse, causing the complete wetting of the rough surface. In order to quantitatively characterize this process on nanostructured surfaces, we perform rare-event atomistic simulations at different pressures and for several texture geometries. Such an approach allows us to identify for each pressure the stable and metastable states and the free energy barriers separating them. Results show that, by starting from the superhydrophobic state and increasing the pressure, the suspended state abruptly collapses at a critical intrusion pressure. If the pressure is subsequently decreased, the system rem...
In this contribution we explore by means of experiments, theory, and molecular dynamics the effect o...
Superhydrophobic coatings repel liquids by trapping air inside microscopic surface textures. However...
In this contribution we explore by means of experiments, theory, and molecular dynamics the effect o...
Superhydrophobicity is connected to the presence of gas pockets within surface asperities. Upon incr...
The mechanism of the collapse of the superhydrophobic state is elucidated for submerged nanoscale te...
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...
In this article, we review some recent theoretical results about intrusion and extrusion of non- wet...
Despite the early promise of superhydrophobic surfaces, their widespread technological adoption has ...
Despite the early promise of superhydrophobic surfaces, their widespread technological adoption has ...
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...
Nanoscale roughness in combination with surface chemistry modification can achieve large liquid slip...
We study the wetting energetics and wetting hysteresis of sessile and impacting water droplets on su...
Nanoscale roughness in combination with surface chemistry modification can achieve large liquid slip...
In this contribution we explore by means of experiments, theory, and molecular dynamics the effect o...
Superhydrophobic coatings repel liquids by trapping air inside microscopic surface textures. However...
In this contribution we explore by means of experiments, theory, and molecular dynamics the effect o...
Superhydrophobicity is connected to the presence of gas pockets within surface asperities. Upon incr...
The mechanism of the collapse of the superhydrophobic state is elucidated for submerged nanoscale te...
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...
In this article, we review some recent theoretical results about intrusion and extrusion of non- wet...
Despite the early promise of superhydrophobic surfaces, their widespread technological adoption has ...
Despite the early promise of superhydrophobic surfaces, their widespread technological adoption has ...
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...
Nanoscale roughness in combination with surface chemistry modification can achieve large liquid slip...
We study the wetting energetics and wetting hysteresis of sessile and impacting water droplets on su...
Nanoscale roughness in combination with surface chemistry modification can achieve large liquid slip...
In this contribution we explore by means of experiments, theory, and molecular dynamics the effect o...
Superhydrophobic coatings repel liquids by trapping air inside microscopic surface textures. However...
In this contribution we explore by means of experiments, theory, and molecular dynamics the effect o...