Combination of two physical phenomena, capillary pressure gradient and wettability gradient, allows a simple two-step fabrication process that yields a reliable hydrophobic self-cleaning condenser surface. The surface is fabricated with specific microscopic topography and further treatment with a chemically inert low-surface-energy material. This process does not require growth of nanofeatures (nanotubes) or hydrophilic–hydrophobic patterning of the surface. Trapezoidal geometry of the microfeatures facilitates droplet transfer from the Wenzel to the Cassie state and reduces droplet critical diameter. The geometry of the micropatterns enhances local coalescence and directional movement for droplets with diameter much smaller than the radial...
Condensation plays a vital role both in research and in industrial applications. While naturally occ...
Condensation of water vapor is an essential process in power generation, water collection, and therm...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Ca...
Combination of two physical phenomena, capillary pressure gradient and wettability gradient, allows ...
Combination of two physical phenomena, capillary pressure gradient and wettability gradient, allows ...
ABSTRACT: Combination of two physical phenomena, capillary pressure gradient and wettability gradien...
Efficient water removal from a cool surface during condensation is critically important to the enhan...
Dropwise condensation (DWC) heat transfer depends strongly on the maximum diameter (<i>D</i><sub>max...
Water condensation is an ubiquitous phenomenon that happens widely in nature. It is also used in ind...
To meet the different needs of various industrial fields, it is of great application value to find a...
Superhydrophobic–hydrophilic hybrid surfaces have attracted intensive interest because of their sign...
Engineering the dropwise condensation of water on surfaces is critical in a wide range of applicatio...
Abstract. We present a hybrid microtextured surface with heterogeneous hydrophilic-hydrophobic regio...
Nanotextured superhydrophobic surfaces have received significant attention due to their ability to e...
Condensation plays a vital role both in research and in industrial applications. While naturally occ...
Condensation of water vapor is an essential process in power generation, water collection, and therm...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Ca...
Combination of two physical phenomena, capillary pressure gradient and wettability gradient, allows ...
Combination of two physical phenomena, capillary pressure gradient and wettability gradient, allows ...
ABSTRACT: Combination of two physical phenomena, capillary pressure gradient and wettability gradien...
Efficient water removal from a cool surface during condensation is critically important to the enhan...
Dropwise condensation (DWC) heat transfer depends strongly on the maximum diameter (<i>D</i><sub>max...
Water condensation is an ubiquitous phenomenon that happens widely in nature. It is also used in ind...
To meet the different needs of various industrial fields, it is of great application value to find a...
Superhydrophobic–hydrophilic hybrid surfaces have attracted intensive interest because of their sign...
Engineering the dropwise condensation of water on surfaces is critical in a wide range of applicatio...
Abstract. We present a hybrid microtextured surface with heterogeneous hydrophilic-hydrophobic regio...
Nanotextured superhydrophobic surfaces have received significant attention due to their ability to e...
Condensation plays a vital role both in research and in industrial applications. While naturally occ...
Condensation of water vapor is an essential process in power generation, water collection, and therm...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Ca...