A facile approach for developing an interfacial solar evaporator by heat localization of solar-thermal energy conversion at water-air liquid composed by in-situ polymerization of Fe2O3 nanoparticles (Fe2O3@PPy) deposited over a facial sponge is proposed. The demonstrated system consists of a floating solar receiver having a vertically cross-linked microchannel for wicking up saline water. The in situ polymerized Fe2O3@PPy interfacial layer promotes diffuse reflection and its rough black surface allows Omni-directional solar absorption (94%) and facilitates efficient thermal localization at the water/air interface and offers a defect-rich surface to promote heat localization (41.9 °C) and excellent thermal management due to cellulosic conten...
Desalination of seawater using solar energy is a promising solution to the global freshwater shortag...
Solar powered steam generation is an emerging area in the field of energy harvest and sustainable te...
Funding Information: The work was supported by the National Science Foundation of China (Grant numbe...
A facile approach for developing an interfacial solar evaporator by heat localization of solar-therm...
A facile approach for developing an interfacial solar evaporator by heat localization of solar-therm...
Water scarcity in mass populated areas has become a major global threat to the survival and sustaina...
Solar desalination devices utilizing sustainable solar energy and the abundant resource of seawater ...
Solar-driven steam generation for desalination is a facile, sustainable, and energy-saving approach ...
Solar-driven evaporation is a promising technology for desalinating seawater and wastewater without ...
We have demonstrated a new strategy for enhancing solar evaporation by using floating light-absorbin...
Solar irradiation is a promising resource for sustainable energy conversion and storage in many tech...
© 2019 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Evaporating seawater and separating salt from wate...
Recently, solar heat localization has provided a promising route for efficient solar steam generatio...
Extracting clean water from seawater based on interfacial evaporation is one of the key energy-effec...
Fresh water on our planet is locked in the ocean as seawater, which has to be desalinated for domest...
Desalination of seawater using solar energy is a promising solution to the global freshwater shortag...
Solar powered steam generation is an emerging area in the field of energy harvest and sustainable te...
Funding Information: The work was supported by the National Science Foundation of China (Grant numbe...
A facile approach for developing an interfacial solar evaporator by heat localization of solar-therm...
A facile approach for developing an interfacial solar evaporator by heat localization of solar-therm...
Water scarcity in mass populated areas has become a major global threat to the survival and sustaina...
Solar desalination devices utilizing sustainable solar energy and the abundant resource of seawater ...
Solar-driven steam generation for desalination is a facile, sustainable, and energy-saving approach ...
Solar-driven evaporation is a promising technology for desalinating seawater and wastewater without ...
We have demonstrated a new strategy for enhancing solar evaporation by using floating light-absorbin...
Solar irradiation is a promising resource for sustainable energy conversion and storage in many tech...
© 2019 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Evaporating seawater and separating salt from wate...
Recently, solar heat localization has provided a promising route for efficient solar steam generatio...
Extracting clean water from seawater based on interfacial evaporation is one of the key energy-effec...
Fresh water on our planet is locked in the ocean as seawater, which has to be desalinated for domest...
Desalination of seawater using solar energy is a promising solution to the global freshwater shortag...
Solar powered steam generation is an emerging area in the field of energy harvest and sustainable te...
Funding Information: The work was supported by the National Science Foundation of China (Grant numbe...