Hot, coastal, hyper-arid regions with intense solar irradiation and strong on- and off-shore wind patterns are ideal locations for the production of renewable electricity using wind turbines or photovoltaics. Given ample access to seawater and scarce freshwater resources, such regions make the direct and selective electrolytic splitting of seawater into molecular hydrogen and oxygen a potentially attractive technology. The key catalytic challenge consists of the competition between anodic chlorine chemistry and the oxygen evolution reaction (OER). This Perspective addresses some aspects related to direct seawater electrolyzers equipped with selective OER and hydrogen evolution reaction (HER) electrocatalysts. Starting from a historical back...
Water shortages are anticipated to occur all over the world and are likely to have a significant eff...
Generation of H2 and O2 from untreated water sources represents a promising alternative to ultrapure...
Seawater electrolysis is promising for grid-scale H2 production without freshwater reliance, but hig...
Hydrogen energy, as a clean and renewable energy, has attracted much attention in recent years. Wate...
Among the many potential future energy sources, hydrogen stands out as particularly promising. Becau...
Seawater is one of the most abundant and clean hydrogen atom resources on our planet, so hydrogen pr...
Hydrogen production from water electrolysis is one of the most promising approaches for the producti...
Hydrogen production by electrolysis provides a sustainable energy vector, but current electrolyzers ...
The implementation of water splitting systems, powered by sustainable energy resources, appears to b...
Utilizing renewable sources of energy is very attractive to provide the growing population on earth ...
In this paper, a new seawater electrolysis technique to produce hydrogen is developed and analysed t...
In this paper we proposed the use of saline water to product hydrogen. As far as using saline water,...
In this paper we propose the use of Wave Energy Converter and saline water to produce hydrogen. Two ...
Electrocatalytic water splitting is the key process for the formation of green fuels for energy tran...
Electrocatalytic splitting of water by means of renewable energy as the electricity supply is one of...
Water shortages are anticipated to occur all over the world and are likely to have a significant eff...
Generation of H2 and O2 from untreated water sources represents a promising alternative to ultrapure...
Seawater electrolysis is promising for grid-scale H2 production without freshwater reliance, but hig...
Hydrogen energy, as a clean and renewable energy, has attracted much attention in recent years. Wate...
Among the many potential future energy sources, hydrogen stands out as particularly promising. Becau...
Seawater is one of the most abundant and clean hydrogen atom resources on our planet, so hydrogen pr...
Hydrogen production from water electrolysis is one of the most promising approaches for the producti...
Hydrogen production by electrolysis provides a sustainable energy vector, but current electrolyzers ...
The implementation of water splitting systems, powered by sustainable energy resources, appears to b...
Utilizing renewable sources of energy is very attractive to provide the growing population on earth ...
In this paper, a new seawater electrolysis technique to produce hydrogen is developed and analysed t...
In this paper we proposed the use of saline water to product hydrogen. As far as using saline water,...
In this paper we propose the use of Wave Energy Converter and saline water to produce hydrogen. Two ...
Electrocatalytic water splitting is the key process for the formation of green fuels for energy tran...
Electrocatalytic splitting of water by means of renewable energy as the electricity supply is one of...
Water shortages are anticipated to occur all over the world and are likely to have a significant eff...
Generation of H2 and O2 from untreated water sources represents a promising alternative to ultrapure...
Seawater electrolysis is promising for grid-scale H2 production without freshwater reliance, but hig...