We report the development and application of a refined version of the classical Cassie-Baxter wetting model for the prediction of surface topographies with superomniphobic traits. The sagging height defined through the capillary length was utilized to assess the relation between a curved liquid-air interface and the surface texture. The wettability, expressed in terms of the static apparent contact angle, was quantified for single- and double-scale surface topographies and for three representative liquids and the results were compared to those of the classical Cassie-Baxter model. Of the three single-scale topographies considered in this work, the fiber case exhibited the highest contact angle across length scales of surface topographies, w...
A number of surfaces encountered in nature are superhydrophobic, displaying water contact angles (WC...
The use of Cassie and Baxter’s equation and that of Wenzel have been subject to some criticism of la...
Rough/patterned/textured surfaces with nano/microcavities that broaden below the surfaceknown as “r...
We report the development and application of a refined version of the classical Cassie-Baxter wettin...
The main objective of this project is the development and application of an accurate model for the p...
Predicting wettability accurately across various materials, surface topographies and wetting liquids...
Predicting wettability accurately across various materials, surface topographies and wetting liquids...
Wetting on rough surfaces is a conundrum that challenges both the scientific and the technological c...
A surface possessing repellency to low surface tension liquids e.g., oils and alcohols (superoleopho...
A surface possessing repellency to low surface tension liquids e.g., oils and alcohols (superoleopho...
Rough/patterned/textured surfaces with nano/microcavities that broaden below the surface known as &q...
Superhydrophobic surfaces often incorporate roughness on both micron and nanometer length scales, al...
We describe a new approach to modeling the wetting behavior of micro- and nano-textured surfaces wit...
The wetting of a material can be tuned by changing the roughness on its surface. Recent advances in ...
This investigation of morphology-wetting links was performed using a biomimetic approach. Three natu...
A number of surfaces encountered in nature are superhydrophobic, displaying water contact angles (WC...
The use of Cassie and Baxter’s equation and that of Wenzel have been subject to some criticism of la...
Rough/patterned/textured surfaces with nano/microcavities that broaden below the surfaceknown as “r...
We report the development and application of a refined version of the classical Cassie-Baxter wettin...
The main objective of this project is the development and application of an accurate model for the p...
Predicting wettability accurately across various materials, surface topographies and wetting liquids...
Predicting wettability accurately across various materials, surface topographies and wetting liquids...
Wetting on rough surfaces is a conundrum that challenges both the scientific and the technological c...
A surface possessing repellency to low surface tension liquids e.g., oils and alcohols (superoleopho...
A surface possessing repellency to low surface tension liquids e.g., oils and alcohols (superoleopho...
Rough/patterned/textured surfaces with nano/microcavities that broaden below the surface known as &q...
Superhydrophobic surfaces often incorporate roughness on both micron and nanometer length scales, al...
We describe a new approach to modeling the wetting behavior of micro- and nano-textured surfaces wit...
The wetting of a material can be tuned by changing the roughness on its surface. Recent advances in ...
This investigation of morphology-wetting links was performed using a biomimetic approach. Three natu...
A number of surfaces encountered in nature are superhydrophobic, displaying water contact angles (WC...
The use of Cassie and Baxter’s equation and that of Wenzel have been subject to some criticism of la...
Rough/patterned/textured surfaces with nano/microcavities that broaden below the surfaceknown as “r...