Hydrogen production by water splitting is a holy grail of science, being one route to a non-fossil fuel and a potential source of clean energy. It is essential to use a non-polluting energy source to drive the reaction and one way is to utilise sunlight energy, combined with a way to overcome the kinetic limitations of the reaction. The production of hydrogen by the photocatalytic cleavage of water can overcome these energetic hurdles. This area of science is briefly reviewed here, focussing on two routes, namely i) the use of sacrificial agents such as alcohols to act as oxygen scavengers and liberate hydrogen only and ii) by direct water splitting to produce both hydrogen and oxygen. The factors which are important in determining the char...
Hydrogen is a coveted gas: industry uses it for everything from removing sulfur from crude oil to ma...
Precious metal-titania materials make good catalysts for hydrogen production from a variety of organ...
Hydrogen has been intensively explored recently as an energy carrier to meet the growing demand for ...
Hydrogen production by water splitting is a holy grail of science, being one route to a non-fossil f...
The photocatalytic production of hydrogen represents a fascinating way to convert and store solar en...
Photocatalytic hydrogen (H2) production is a process that converts solar energy into chemical energy...
The necessity for developing clean energy technology hasled to the surge in renewable energy researc...
The photocatalytic splitting of water into hydrogen and oxygen using solar energy is a challenging r...
In this entry, photo-reactors for catalytic solar hydrogen production are introduced and explained. ...
Fossil fuels are non-renewable energy sources, combustion of fossil fuels cause a series of global e...
Hydrogen derived from sustainable materials may be an important energy vector in a post petroleum e...
The main objective of the supplementary equipment project is to design and construct a photocatalyti...
This paper examines photocatalytic hydrogen production as a clean energy solution to address challen...
Abstract Solar hydrogen production through water splitting is the most important and promising appro...
Present energy systems are heavily dependent on fossil fuels. This will eventually lead to the fores...
Hydrogen is a coveted gas: industry uses it for everything from removing sulfur from crude oil to ma...
Precious metal-titania materials make good catalysts for hydrogen production from a variety of organ...
Hydrogen has been intensively explored recently as an energy carrier to meet the growing demand for ...
Hydrogen production by water splitting is a holy grail of science, being one route to a non-fossil f...
The photocatalytic production of hydrogen represents a fascinating way to convert and store solar en...
Photocatalytic hydrogen (H2) production is a process that converts solar energy into chemical energy...
The necessity for developing clean energy technology hasled to the surge in renewable energy researc...
The photocatalytic splitting of water into hydrogen and oxygen using solar energy is a challenging r...
In this entry, photo-reactors for catalytic solar hydrogen production are introduced and explained. ...
Fossil fuels are non-renewable energy sources, combustion of fossil fuels cause a series of global e...
Hydrogen derived from sustainable materials may be an important energy vector in a post petroleum e...
The main objective of the supplementary equipment project is to design and construct a photocatalyti...
This paper examines photocatalytic hydrogen production as a clean energy solution to address challen...
Abstract Solar hydrogen production through water splitting is the most important and promising appro...
Present energy systems are heavily dependent on fossil fuels. This will eventually lead to the fores...
Hydrogen is a coveted gas: industry uses it for everything from removing sulfur from crude oil to ma...
Precious metal-titania materials make good catalysts for hydrogen production from a variety of organ...
Hydrogen has been intensively explored recently as an energy carrier to meet the growing demand for ...