Abstract Freshwater acquisition methods under various environments are required because water scarcity has intensified worldwide. Furthermore, as water is an essential resource for humans, a freshwater acquisition method that can be utilized even under harsh conditions, such as waterless and polluted water environments, is highly required. In this study, a three-dimensional (3D) printing-assisted hierarchically structured surface with dual-wettability (i.e., surface with both hydrophobic and hydrophilic region) for fog harvesting was developed by mimicking the biological features (i.e., cactus spines and elytra of Namib Desert beetles) that have effective characteristics for fog harvesting. The cactus-shaped surface exhibited self-transport...
Desert beetles and cactus plants collect water from fog in arid regions. The desert beetle uses hete...
Superhydrophobic surfaces are gaining a tremendous amount of attention within multiple scientific an...
Water harvesting is a core technology for collecting fresh water in arid areas. In this study, we de...
With the impacts of climate change and impending crisis of clean drinking water, designing functiona...
On a superwetting surface, droplet behaviour can be manipulated. Utilising the directional motion an...
Fog harvesting of the Namib desert beetles has inspired many researchers to design artificial fog ha...
In nature, various plants and animals exhibit promising structurally-defined functionalities. Many d...
As the Earth's atmosphere contains an abundant amount of water as vapors, a device which can capture...
Water collection from fog has been considered as a meaningful strategy to alleviate the scarcity of ...
Water harvesting is a core technology for collecting fresh water in arid areas. In this study, we de...
Water harvesting is a core technology for collecting fresh water in arid areas. In this study, we de...
In this thesis, we used CMOS-like technologies to produce improved, hierarchical multifunctional bio...
Desert beetles and cactus plants collect water from fog in arid regions. The desert beetle uses hete...
*S Supporting Information ABSTRACT: Biomimetic functional surfaces are attracting increasing attenti...
Biomimicry offers innovative sustainable solutions for many dire resource-based challenges. The Nami...
Desert beetles and cactus plants collect water from fog in arid regions. The desert beetle uses hete...
Superhydrophobic surfaces are gaining a tremendous amount of attention within multiple scientific an...
Water harvesting is a core technology for collecting fresh water in arid areas. In this study, we de...
With the impacts of climate change and impending crisis of clean drinking water, designing functiona...
On a superwetting surface, droplet behaviour can be manipulated. Utilising the directional motion an...
Fog harvesting of the Namib desert beetles has inspired many researchers to design artificial fog ha...
In nature, various plants and animals exhibit promising structurally-defined functionalities. Many d...
As the Earth's atmosphere contains an abundant amount of water as vapors, a device which can capture...
Water collection from fog has been considered as a meaningful strategy to alleviate the scarcity of ...
Water harvesting is a core technology for collecting fresh water in arid areas. In this study, we de...
Water harvesting is a core technology for collecting fresh water in arid areas. In this study, we de...
In this thesis, we used CMOS-like technologies to produce improved, hierarchical multifunctional bio...
Desert beetles and cactus plants collect water from fog in arid regions. The desert beetle uses hete...
*S Supporting Information ABSTRACT: Biomimetic functional surfaces are attracting increasing attenti...
Biomimicry offers innovative sustainable solutions for many dire resource-based challenges. The Nami...
Desert beetles and cactus plants collect water from fog in arid regions. The desert beetle uses hete...
Superhydrophobic surfaces are gaining a tremendous amount of attention within multiple scientific an...
Water harvesting is a core technology for collecting fresh water in arid areas. In this study, we de...