The bioinspired nanocone-decorated three-dimensional fiber network (N3D) can be fabricated, where an original 3D web is designed, inspired by some newest research findings of spider web, and it is decorated with hydrophilic zinc oxide (ZnO) nanocones inspired by cactus spine. Multilevel high specific surface area exposure on fiber together with the hydrophilic decoration enables it to be more attractive to water molecules. These nanocones can capture fog droplet, generate coalesced droplet, and accordingly make droplet transport efficient because of Laplace pressure difference. Especially, a novel mechanism revealed that after the nanocone-decorated fiber was wetted, that is, a water film formed and immediately broke up into droplets, owing...
On a superwetting surface, droplet behaviour can be manipulated. Utilising the directional motion an...
On a superwetting surface, droplet behaviour can be manipulated. Utilising the directional motion an...
To develop an efficient water-collecting surface that integrates both fast water-capturing and easy ...
The bioinspired nanocone-decorated three-dimensional fiber network (N3D) can be fabricated, where an...
The bioinspired nanocone-decorated three-dimensional fiber network (N3D) can be fabricated, where an...
The bioinspired nanocone-decorated three-dimensional fiber network (N3D) can be fabricated, where an...
The bioinspired nanocone-decorated three-dimensional fiber network (N3D) can be fabricated, where an...
As the Earth's atmosphere contains an abundant amount of water as vapors, a device which can capture...
Abstract We designed a kind of smart bioinspired fiber with multi-gradient and multi-scale spindle k...
Since the water-collecting ability of the wetted cribellate spider capture silk is the result of a u...
In order to address water shortage issues around the world, the collection of fog has been considere...
In order to address water shortage issues around the world, the collection of fog has been considere...
In order to address water shortage issues around the world, the collection of fog has been considere...
Biological surfaces provide endless inspiration for design and fabrication of smart materials. It ha...
Biological surfaces provide endless inspiration for design and fabrication of smart materials. It ha...
On a superwetting surface, droplet behaviour can be manipulated. Utilising the directional motion an...
On a superwetting surface, droplet behaviour can be manipulated. Utilising the directional motion an...
To develop an efficient water-collecting surface that integrates both fast water-capturing and easy ...
The bioinspired nanocone-decorated three-dimensional fiber network (N3D) can be fabricated, where an...
The bioinspired nanocone-decorated three-dimensional fiber network (N3D) can be fabricated, where an...
The bioinspired nanocone-decorated three-dimensional fiber network (N3D) can be fabricated, where an...
The bioinspired nanocone-decorated three-dimensional fiber network (N3D) can be fabricated, where an...
As the Earth's atmosphere contains an abundant amount of water as vapors, a device which can capture...
Abstract We designed a kind of smart bioinspired fiber with multi-gradient and multi-scale spindle k...
Since the water-collecting ability of the wetted cribellate spider capture silk is the result of a u...
In order to address water shortage issues around the world, the collection of fog has been considere...
In order to address water shortage issues around the world, the collection of fog has been considere...
In order to address water shortage issues around the world, the collection of fog has been considere...
Biological surfaces provide endless inspiration for design and fabrication of smart materials. It ha...
Biological surfaces provide endless inspiration for design and fabrication of smart materials. It ha...
On a superwetting surface, droplet behaviour can be manipulated. Utilising the directional motion an...
On a superwetting surface, droplet behaviour can be manipulated. Utilising the directional motion an...
To develop an efficient water-collecting surface that integrates both fast water-capturing and easy ...