Recently, novel properties have been observed when superhydrophobic and superhydrophilic surfaces are combined. For example, the Stenocara beetle, an insect in the Namib Desert, has an incredible ability to capture fresh water from air for its survival in the dry desert environment [1]. Such a feature derives from its special wing that has a hydrophilic-patterned superhydrophobic surface. Materials having a similar surface feature also exhibited a similar water-harvesting function [2]. A spider silk has been reported to show a periodic alternation of hydrophobic and hydrophilic surfaces along the fiberlength direction [3], which can quickly collect water from air. It was also observed that water droplets moved in one direction along a super...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
On a superwetting surface, droplet behaviour can be manipulated. Utilising the directional motion an...
Superhydrophobic surfaces were created on hydrophilic cotton fabrics by a simple wet chemical proces...
In this study, we demonstrate that fabrics having a wettability gradient from superhydrophobic to hy...
Fabrics having an interesting unidirectional water-transfer effect have been prepared by a special c...
In this study, we demonstrate that fabrics having a wettability gradient from superhydrophobic to hy...
In this study, fabrics with novel super water-repellent and unidirectional water-transfer functions ...
Fabrics with automatic one-way water transport ability are highly desirable for applications in dail...
This article reports on the fabrication of cotton fabrics with single-faced superhydrophobicity usin...
To develop an efficient water-collecting surface that integrates both fast water-capturing and easy ...
To develop an efficient water-collecting surface that integrates both fast water-capturing and easy ...
Biological surfaces provide endless inspiration for design and fabrication of smart materials. It ha...
Fabrics with moisture management properties are strongly expected to benefit various potential appli...
Highly hydrophobic surfaces have been intensively investigated in the last years because their prope...
It is well established that the water wettability of ma-terials is governed by both the chemical com...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
On a superwetting surface, droplet behaviour can be manipulated. Utilising the directional motion an...
Superhydrophobic surfaces were created on hydrophilic cotton fabrics by a simple wet chemical proces...
In this study, we demonstrate that fabrics having a wettability gradient from superhydrophobic to hy...
Fabrics having an interesting unidirectional water-transfer effect have been prepared by a special c...
In this study, we demonstrate that fabrics having a wettability gradient from superhydrophobic to hy...
In this study, fabrics with novel super water-repellent and unidirectional water-transfer functions ...
Fabrics with automatic one-way water transport ability are highly desirable for applications in dail...
This article reports on the fabrication of cotton fabrics with single-faced superhydrophobicity usin...
To develop an efficient water-collecting surface that integrates both fast water-capturing and easy ...
To develop an efficient water-collecting surface that integrates both fast water-capturing and easy ...
Biological surfaces provide endless inspiration for design and fabrication of smart materials. It ha...
Fabrics with moisture management properties are strongly expected to benefit various potential appli...
Highly hydrophobic surfaces have been intensively investigated in the last years because their prope...
It is well established that the water wettability of ma-terials is governed by both the chemical com...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
On a superwetting surface, droplet behaviour can be manipulated. Utilising the directional motion an...
Superhydrophobic surfaces were created on hydrophilic cotton fabrics by a simple wet chemical proces...