We study the wetting energetics and wetting hysteresis of sessile and impacting water droplets on superhydrophobic surfaces as a function of surface texture and surface energy. For sessile drops, we find three wetting regimes on these surfaces: equilibrium Cassie at small feature spacing, equilibrium Wenzel at large feature spacing, and an intermediate state at medium feature spacing. We observe minimum wetting hysteresis not on surfaces that exhibit Cassie wetting but rather on surfaces in the intermediate regime. We argue that droplets on these surfaces are metastable Cassie droplets whose internal Laplace pressure is insufficient to overcome the energy barrier required to homogeneously wet the surface. These metastable Cassie droplets sh...
Experiments to understand the effect of surface wettability on impact characteristics of water drops...
A droplet hitting a superhydrophobic surface will undergo the Cassie to Wenzel transition when the w...
The work presented here explores and utilizes numerical methods to study the phenomenon of superhydr...
We study the wetting energetics and wetting hysteresis of sessile and impacting water droplets on su...
URL to paper listed on conference siteIn this paper, we present static and dynamic wetting interact...
The impact dynamics and spreading behavior of droplets impinging on structured superhydrophobic surf...
We present fluid dynamic videos of droplet impact on three types of superhydrophobic surfaces to exp...
We present fluid dynamic videos of droplet impact on three types of superhydrophobic surfaces to exp...
Despite the fact that superhydrophobic surfaces possess useful and unique properties, their practica...
Experiments to understand the effect of surface wettability on impact characteristics of water drops...
We consider the quasi-static energy of a drop on a textured hydrophilic surface, with taking the con...
Superhydrophobic surfaces for repelling impacting water droplets are typically created by designing ...
We consider the quasi-static energy of a drop on a textured hydrophilic surface, with taking the con...
Superhydrophobic surfaces for repelling impacting water droplets are typically created by designing ...
The wettability of hydrophobic surfaces and the dynamic behaviors of droplets impacting on hydrophob...
Experiments to understand the effect of surface wettability on impact characteristics of water drops...
A droplet hitting a superhydrophobic surface will undergo the Cassie to Wenzel transition when the w...
The work presented here explores and utilizes numerical methods to study the phenomenon of superhydr...
We study the wetting energetics and wetting hysteresis of sessile and impacting water droplets on su...
URL to paper listed on conference siteIn this paper, we present static and dynamic wetting interact...
The impact dynamics and spreading behavior of droplets impinging on structured superhydrophobic surf...
We present fluid dynamic videos of droplet impact on three types of superhydrophobic surfaces to exp...
We present fluid dynamic videos of droplet impact on three types of superhydrophobic surfaces to exp...
Despite the fact that superhydrophobic surfaces possess useful and unique properties, their practica...
Experiments to understand the effect of surface wettability on impact characteristics of water drops...
We consider the quasi-static energy of a drop on a textured hydrophilic surface, with taking the con...
Superhydrophobic surfaces for repelling impacting water droplets are typically created by designing ...
We consider the quasi-static energy of a drop on a textured hydrophilic surface, with taking the con...
Superhydrophobic surfaces for repelling impacting water droplets are typically created by designing ...
The wettability of hydrophobic surfaces and the dynamic behaviors of droplets impacting on hydrophob...
Experiments to understand the effect of surface wettability on impact characteristics of water drops...
A droplet hitting a superhydrophobic surface will undergo the Cassie to Wenzel transition when the w...
The work presented here explores and utilizes numerical methods to study the phenomenon of superhydr...