Given the emerging energy and water challenges facing mankind, solar-driven water evaporation has been gaining renewed research attention from both academia and industry as an energy-efficient means of wastewater treatment and clean water production. In this project, a bilayered material, consisting of a top self-floating hydrophobic CNT membrane and a bottom hydrophilic macroporous silica substrate, was logically designed and fabricated for highly energy-efficient solar-driven water evaporation based on the concept of interfacial heating. The top thin CNT membrane with excellent light adsorption capability acted as photothermal component, which harvested and converted almost the entire incident light to heat for exclusive heating of interf...
The development of technology for solar interface evaporation has a significant meaning for the sust...
Solar-driven seawater desalination is considered a promising method for alleviating the water crisis...
International audienceSmall water systems that serve fewer than a few thousand persons are often les...
Recently, solar-driven interfacial water evaporation has shown great potential in desalination. In a...
Solar water evaporation is thought to be a promising solution to address the issues of global water ...
Solar-driven interfacial evaporation provides a feasible and sustainable way to solve the fresh wate...
Water evaporation is a ubiquitous phenomenon in nature. To fully explore the solar-enabled water eva...
Membrane separation is widely regarded as a promising technology for water treatment. To run the mem...
Solar-driven water evaporation assisted by photothermal membranes is considered as one of the sustai...
Construction of semiconductor-based membranes accommodates new routes for photothermal conversion an...
One of the main trends in the development of solar interface evaporation technology is the simple, e...
A simple, low-dose, durable, and carbon nanotube-based floating solar still (CNTs-FSS) has been prep...
Solar desalination and purification based on interfacial evaporation have great potential to allevia...
Abstract Solar vapor generation technology is promising in seawater desalination, sewage purificatio...
A novel and elegant hydrophilic/hydrophobic nanoporous double layer structure was designed and devel...
The development of technology for solar interface evaporation has a significant meaning for the sust...
Solar-driven seawater desalination is considered a promising method for alleviating the water crisis...
International audienceSmall water systems that serve fewer than a few thousand persons are often les...
Recently, solar-driven interfacial water evaporation has shown great potential in desalination. In a...
Solar water evaporation is thought to be a promising solution to address the issues of global water ...
Solar-driven interfacial evaporation provides a feasible and sustainable way to solve the fresh wate...
Water evaporation is a ubiquitous phenomenon in nature. To fully explore the solar-enabled water eva...
Membrane separation is widely regarded as a promising technology for water treatment. To run the mem...
Solar-driven water evaporation assisted by photothermal membranes is considered as one of the sustai...
Construction of semiconductor-based membranes accommodates new routes for photothermal conversion an...
One of the main trends in the development of solar interface evaporation technology is the simple, e...
A simple, low-dose, durable, and carbon nanotube-based floating solar still (CNTs-FSS) has been prep...
Solar desalination and purification based on interfacial evaporation have great potential to allevia...
Abstract Solar vapor generation technology is promising in seawater desalination, sewage purificatio...
A novel and elegant hydrophilic/hydrophobic nanoporous double layer structure was designed and devel...
The development of technology for solar interface evaporation has a significant meaning for the sust...
Solar-driven seawater desalination is considered a promising method for alleviating the water crisis...
International audienceSmall water systems that serve fewer than a few thousand persons are often les...