We investigate the transition between the Cassie-Baxter and Wenzel states of a slowly evaporating, micron-scale drop on a superhydrophobic surface. In two dimensions analytical results show that there are two collapse mechanisms. For long posts the drop collapses when it is able to overcome the free-energy barrier presented by the hydrophobic posts. For short posts, as the drop loses volume, its curvature increases allowing it to touch the surface below the posts. We emphasise the importance of the contact line retreating across the surface as the drop becomes smaller: this often preempts the collapse. In a quasi–three-dimensional simulation we find similar behaviour, with the additional feature that the drop can depin from all but the peri...
We study the wetting energetics and wetting hysteresis of sessile and impacting water droplets on su...
The mechanism of the collapse of the superhydrophobic state is elucidated for submerged nanoscale te...
We use a free energy lattice Boltzmann approach to investigate numerically the dynamics of drops mov...
Despite the fact that superhydrophobic surfaces possess useful and unique properties, their practica...
The wetting transition from the Cassie-Baxter to the Wenzel state is a phenomenon critically pertine...
We show that the equilibrium state of a water drop deposited on a superhydrophobic surface cannot be...
We show that the equilibrium state of a water drop deposited on a superhydrophobic surface cannot be...
ABSTRACT: The wetting transition from the Cassie−Baxter to the Wenzel state is a phenomenon critical...
An important feature in the design of superhydrophobic surfaces is their robustness against collapse...
A liquid droplet placed on a geometrically textured surface may take on a “suspended” state, in whic...
The work presented here explores and utilizes numerical methods to study the phenomenon of superhydr...
An important feature in the design of superhydrophobic surfaces is their robustness against collapse...
A hitherto unknown mechanism for wetting transition is reported. When a pendant drop settles upon de...
Superhydrophobic surfaces have long been the center of attention of many researchers due to their un...
Superhydrophobic surfaces have long been the center of attention of many researchers due to their un...
We study the wetting energetics and wetting hysteresis of sessile and impacting water droplets on su...
The mechanism of the collapse of the superhydrophobic state is elucidated for submerged nanoscale te...
We use a free energy lattice Boltzmann approach to investigate numerically the dynamics of drops mov...
Despite the fact that superhydrophobic surfaces possess useful and unique properties, their practica...
The wetting transition from the Cassie-Baxter to the Wenzel state is a phenomenon critically pertine...
We show that the equilibrium state of a water drop deposited on a superhydrophobic surface cannot be...
We show that the equilibrium state of a water drop deposited on a superhydrophobic surface cannot be...
ABSTRACT: The wetting transition from the Cassie−Baxter to the Wenzel state is a phenomenon critical...
An important feature in the design of superhydrophobic surfaces is their robustness against collapse...
A liquid droplet placed on a geometrically textured surface may take on a “suspended” state, in whic...
The work presented here explores and utilizes numerical methods to study the phenomenon of superhydr...
An important feature in the design of superhydrophobic surfaces is their robustness against collapse...
A hitherto unknown mechanism for wetting transition is reported. When a pendant drop settles upon de...
Superhydrophobic surfaces have long been the center of attention of many researchers due to their un...
Superhydrophobic surfaces have long been the center of attention of many researchers due to their un...
We study the wetting energetics and wetting hysteresis of sessile and impacting water droplets on su...
The mechanism of the collapse of the superhydrophobic state is elucidated for submerged nanoscale te...
We use a free energy lattice Boltzmann approach to investigate numerically the dynamics of drops mov...