Photoelectrochemical (PEC) water splitting provides a "green" approach for hydrogen production. Photoanodes for water oxidation reactions are the bottleneck for PEC water splitting due to the involved thermodynamic and kinetic challenges. To obtain the target of 10% solar-to-hydrogen (STH) efficiency toward practical applications, efficient photoanodes should be developed. Owing to the intrinsic advantages of low cost, good light harvesting, low toxicity, and excellent (photo)-electrochemical stability, visible light responsive metal oxides such as WO, α-FeO and BiVO have attracted great attention for potential photoanodes and significant achievements have been made in the past decades. In this review, the sate-of-the-art progresses of WO, ...
The search for earth-abundant materials that can be used in solar water splitting cells remains an i...
The need to satisfy the growing global population's enormous energy demands is a major challenge for...
Abundant materials, cheap synthesis methods and high efficiencies are required for photoelectrodes m...
Solar-driven water splitting technology is considered to be a promising solution for the global ener...
In order to sustainably meet the future humanity energy needs, alternative energy production techniq...
This chapter discusses the most promising visible light-responsive inorganic catalysts for the oxida...
Photoelectrochemical (PEC) water splitting has witnessed rapid development because of the potential ...
Photoelectrochemical (PEC) water splitting, which is a type of artificial photosynthesis, is a susta...
Metal oxide semiconductors play a central role as photoanodes for the photooxidation of water, thank...
The photoelectrochemical (PEC) water splitting (WS) process has attracted a lot of attention during ...
As solar energy is the most abundant energy source, it has been widely exploited for thermal and ele...
Photoelectrochemical (PEC) cells for solar???energy conversion have received immense interest as a p...
The development of an efficient conversion system to transform solar energy into chemical energy, su...
Photoelectrochemical water splitting with metal oxide semiconductors offers a cost-competitive alter...
textSolar water splitting -- using electromagnetic energy to convert water to hydrogen and oxygen ga...
The search for earth-abundant materials that can be used in solar water splitting cells remains an i...
The need to satisfy the growing global population's enormous energy demands is a major challenge for...
Abundant materials, cheap synthesis methods and high efficiencies are required for photoelectrodes m...
Solar-driven water splitting technology is considered to be a promising solution for the global ener...
In order to sustainably meet the future humanity energy needs, alternative energy production techniq...
This chapter discusses the most promising visible light-responsive inorganic catalysts for the oxida...
Photoelectrochemical (PEC) water splitting has witnessed rapid development because of the potential ...
Photoelectrochemical (PEC) water splitting, which is a type of artificial photosynthesis, is a susta...
Metal oxide semiconductors play a central role as photoanodes for the photooxidation of water, thank...
The photoelectrochemical (PEC) water splitting (WS) process has attracted a lot of attention during ...
As solar energy is the most abundant energy source, it has been widely exploited for thermal and ele...
Photoelectrochemical (PEC) cells for solar???energy conversion have received immense interest as a p...
The development of an efficient conversion system to transform solar energy into chemical energy, su...
Photoelectrochemical water splitting with metal oxide semiconductors offers a cost-competitive alter...
textSolar water splitting -- using electromagnetic energy to convert water to hydrogen and oxygen ga...
The search for earth-abundant materials that can be used in solar water splitting cells remains an i...
The need to satisfy the growing global population's enormous energy demands is a major challenge for...
Abundant materials, cheap synthesis methods and high efficiencies are required for photoelectrodes m...