Understanding wettability and mechanisms of wetting transition are important for design and engineering of superhydrophobic surfaces. There have been numerous studies on the design and fabrication of superhydrophobic and omniphobic surfaces and on the wetting transition mechanisms triggered by liquid evaporation. However, there is a lack of a universal method to examine wetting transition on rough surfaces. Here, we introduce force zones across the droplet base and use a local force balance model to explain wetting transition on engineered nanoporous microstructures, utilizing a critical force per unit length (FPL) value. For the first time, we provide a universal scale using the concept of the critical FPL value which enables comparison of...
ABSTRACT This work experimentally investigates the evaporation rates of water drops on surfaces of v...
Due to the property of water repellence, biomimetic superhydrophobic surfaces have been widely appli...
Over the past decade, the most common approach to creating liquid shedding surfaces has been to ampl...
We study the wetting energetics and wetting hysteresis of sessile and impacting water droplets on su...
Prediction and active control of the spatial distribution of particulate deposits obtained from sess...
This paper investigates the stability of the Cassie state of wetting in transparent superhydrophobic...
The use of Cassie and Baxter's equation and that of Wenzel has been subject to some criticism of lat...
Omniphobic surfaces with reentrant microstructures have been investigated for a range of application...
\u3cp\u3eEvaporation of water droplets on a superhydrophobic substrate, on which the contact line is...
URL to paper listed on conference siteIn this paper, we present static and dynamic wetting interact...
This paper investigates the stability of the Cassie state of wetting in transparent superhydrophobic...
Cataloged from PDF version of article.This paper investigates the stability of the Cassie state of w...
ABSTRACT: This paper investigates the stability of the Cassie state of wetting in transparent superh...
We study the wetting energetics and wetting hysteresis of sessile and impacting water droplets on su...
Due to the property of water repellence, biomimetic superhydrophobic surfaces have been widely appli...
ABSTRACT This work experimentally investigates the evaporation rates of water drops on surfaces of v...
Due to the property of water repellence, biomimetic superhydrophobic surfaces have been widely appli...
Over the past decade, the most common approach to creating liquid shedding surfaces has been to ampl...
We study the wetting energetics and wetting hysteresis of sessile and impacting water droplets on su...
Prediction and active control of the spatial distribution of particulate deposits obtained from sess...
This paper investigates the stability of the Cassie state of wetting in transparent superhydrophobic...
The use of Cassie and Baxter's equation and that of Wenzel has been subject to some criticism of lat...
Omniphobic surfaces with reentrant microstructures have been investigated for a range of application...
\u3cp\u3eEvaporation of water droplets on a superhydrophobic substrate, on which the contact line is...
URL to paper listed on conference siteIn this paper, we present static and dynamic wetting interact...
This paper investigates the stability of the Cassie state of wetting in transparent superhydrophobic...
Cataloged from PDF version of article.This paper investigates the stability of the Cassie state of w...
ABSTRACT: This paper investigates the stability of the Cassie state of wetting in transparent superh...
We study the wetting energetics and wetting hysteresis of sessile and impacting water droplets on su...
Due to the property of water repellence, biomimetic superhydrophobic surfaces have been widely appli...
ABSTRACT This work experimentally investigates the evaporation rates of water drops on surfaces of v...
Due to the property of water repellence, biomimetic superhydrophobic surfaces have been widely appli...
Over the past decade, the most common approach to creating liquid shedding surfaces has been to ampl...