One of the most fascinating natural phenomena is the ability of some surfaces to repel water drops. Since the discovery of lotus leaf surface structure, several attempts of artificial, biomimetic superhydrophobic surfaces (SHS) have been made. Nowadays, we know that superhydrophobicity arises from a combination of surface morphology and chemical composition. However, different surfaces can display analogous wetting properties in static conditions (e.g. similar contact angles) but radically divergent drop impact output. Thus, drop impact studies provide enhanced insight on surface wetting properties in dynamic conditions. We fabricated SHS with different morphology and/or chemical composition. Namely, surface S had a flower-like alumina str...
It is well known that a superhydrophobic surface may not be able to repel impacting droplets because...
A number of surfaces encountered in nature are superhydrophobic, displaying water contact angles (WC...
Three superhydrophobic surfaces have been prepared on an aluminium substrate, which was roughened by...
One of the most fascinating natural phenomena is the ability of some surfaces to repel water drops. ...
One of the most fascinating natural phenomena is the ability of some surfaces to repel water drops. ...
We present fluid dynamic videos of droplet impact on three types of superhydrophobic surfaces to exp...
Effortless preparation of superhydrophobic surfaces mimicking the wetting characteristics of lotus l...
URL to paper listed on conference siteIn this paper, we present static and dynamic wetting interact...
We present fluid dynamic videos of droplet impact on three types of superhydrophobic surfaces to exp...
Effortless preparation of superhydrophobic surfaces mimicking the wetting characteristics of lotus l...
The development of robust surfaces that repel liquid droplets has a broad impact on enhancing surfac...
Since the description of the 'Lotus Effect' by Barthlott and Neinhuis in 1997, the existen...
It is well known that a superhydrophobic surface may not be able to repel impacting droplets because...
It is well known that a superhydrophobic surface may not be able to repel impacting droplets because...
It is well known that a superhydrophobic surface may not be able to repel impacting droplets because...
It is well known that a superhydrophobic surface may not be able to repel impacting droplets because...
A number of surfaces encountered in nature are superhydrophobic, displaying water contact angles (WC...
Three superhydrophobic surfaces have been prepared on an aluminium substrate, which was roughened by...
One of the most fascinating natural phenomena is the ability of some surfaces to repel water drops. ...
One of the most fascinating natural phenomena is the ability of some surfaces to repel water drops. ...
We present fluid dynamic videos of droplet impact on three types of superhydrophobic surfaces to exp...
Effortless preparation of superhydrophobic surfaces mimicking the wetting characteristics of lotus l...
URL to paper listed on conference siteIn this paper, we present static and dynamic wetting interact...
We present fluid dynamic videos of droplet impact on three types of superhydrophobic surfaces to exp...
Effortless preparation of superhydrophobic surfaces mimicking the wetting characteristics of lotus l...
The development of robust surfaces that repel liquid droplets has a broad impact on enhancing surfac...
Since the description of the 'Lotus Effect' by Barthlott and Neinhuis in 1997, the existen...
It is well known that a superhydrophobic surface may not be able to repel impacting droplets because...
It is well known that a superhydrophobic surface may not be able to repel impacting droplets because...
It is well known that a superhydrophobic surface may not be able to repel impacting droplets because...
It is well known that a superhydrophobic surface may not be able to repel impacting droplets because...
A number of surfaces encountered in nature are superhydrophobic, displaying water contact angles (WC...
Three superhydrophobic surfaces have been prepared on an aluminium substrate, which was roughened by...