When a liquid drop impinges a hydrophobic rough surface it can either bounce off the surface (fakir droplets) or be impaled and strongly stuck on it (Wenzel droplets). The analysis of drop impact and quasi-static “loading” experiments on model microfabricated surfaces allows to clearly identify the forces hindering the impalement transitions. A simple semi-quantitative model is proposed to account for the observed relation between the surface topography and the robustness of fakir non-wetting states. Motivated by potential applications in microfluidics and in the fabrication of self-cleaning surfaces, we finally propose some guidelines to design robust superhydrophobic surfaces
Water drops deposited on hydrophobic materials decorated with dilute micro-posts generally form pear...
One of the most fascinating natural phenomena is the ability of some surfaces to repel water drops. ...
Water drops deposited on hydrophobic materials decorated with dilute micro-posts generally form pear...
Liquid droplets impacting a superhydrophobic surface decorated with micron-scale posts often bounce...
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...
Despite the fact that superhydrophobic surfaces possess useful and unique properties, their practica...
Water droplets impinging on micro grooved polydimethylsiloxane surfaces were studied. Depending on t...
PACS. 68.08.-p – Liquid-solid interfaces. Abstract. – A drop of water thrown on a super-hydrophobic ...
We experimentally investigate the impact dynamics of a microliter water droplet on a hydrophobic mic...
We experimentally investigate drop impact dynamics onto different superhydrophobic surfaces, consist...
We study the wetting energetics and wetting hysteresis of sessile and impacting water droplets on su...
The wettability of hydrophobic surfaces and the dynamic behaviors of droplets impacting on hydrophob...
DoctorThe textured surfaces with arrays of microscale pillars have been extensively studied due to t...
One of the most fascinating natural phenomena is the ability of some surfaces to repel water drops. ...
Water drops deposited on hydrophobic materials decorated with dilute micro-posts generally form pear...
One of the most fascinating natural phenomena is the ability of some surfaces to repel water drops. ...
Water drops deposited on hydrophobic materials decorated with dilute micro-posts generally form pear...
Liquid droplets impacting a superhydrophobic surface decorated with micron-scale posts often bounce...
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...
Despite the fact that superhydrophobic surfaces possess useful and unique properties, their practica...
Water droplets impinging on micro grooved polydimethylsiloxane surfaces were studied. Depending on t...
PACS. 68.08.-p – Liquid-solid interfaces. Abstract. – A drop of water thrown on a super-hydrophobic ...
We experimentally investigate the impact dynamics of a microliter water droplet on a hydrophobic mic...
We experimentally investigate drop impact dynamics onto different superhydrophobic surfaces, consist...
We study the wetting energetics and wetting hysteresis of sessile and impacting water droplets on su...
The wettability of hydrophobic surfaces and the dynamic behaviors of droplets impacting on hydrophob...
DoctorThe textured surfaces with arrays of microscale pillars have been extensively studied due to t...
One of the most fascinating natural phenomena is the ability of some surfaces to repel water drops. ...
Water drops deposited on hydrophobic materials decorated with dilute micro-posts generally form pear...
One of the most fascinating natural phenomena is the ability of some surfaces to repel water drops. ...
Water drops deposited on hydrophobic materials decorated with dilute micro-posts generally form pear...