The development of catalysts for water oxidation to oxygen has been the subject of intense investigation in the last decade. In parallel to the search for high catalytic performance, many works have focused on the mechanistic analysis of the process. In this perspective, the oxidation of water through light-assisted cycles composed of an electron acceptor (EA), a photosensitizer (PS), and a water oxidation catalyst (WOC) can provide insightful and complementary information with respect to the use of chemical oxidants or to electrochemical techniques. In this minireview, we discuss the mechanistic aspects of the EA/PS/WOC photoactivated cycles, and in particular: (i) the general elementary steps; (ii) the required features and the nature of ...
Water oxidation is the primary reaction of both natural and artificial photosynthesis. Developing ac...
Development of efficient and economic water oxidation catalysts (WOCs) remains a crucial bottleneck ...
Energy has been a central subject for human development from Homo erectus to date. The massive us...
he development of catalysts for water oxidation to oxygen has been the subject of intense investigat...
Water oxidation to dioxygen is a key step common to most artificial photosynthetic reaction schemes....
In the search for sustainable energy solutions, the idea of artificial photosynthesis has been propo...
New progress towards artificial photosynthetic methods and solar fuels will depend on the discovery ...
We report an efficient molecular light-driven system to oxidize water to oxygen and a kinetic analys...
In artificial photosynthesis, the sun drives water splitting into H2 and O2 or converts CO2 into a u...
In artificial photosynthesis, the sun drives water splitting into H2 and O2 or converts CO2 into a u...
Water oxidation is a key step common to most artificial photosynthetic reaction schemes.[1] It is a ...
As a virtually inexhaustible source, solar energy plays a major role in future global energy scenari...
Photocatalysis, in its broader meaning, indicates catalytic processes initiated by light. The term i...
This thesis describes the development and study of catalysts for redox reactions, which either utili...
Artificial photosynthesis provides a promising solution to the future sustainable energy system. Wat...
Water oxidation is the primary reaction of both natural and artificial photosynthesis. Developing ac...
Development of efficient and economic water oxidation catalysts (WOCs) remains a crucial bottleneck ...
Energy has been a central subject for human development from Homo erectus to date. The massive us...
he development of catalysts for water oxidation to oxygen has been the subject of intense investigat...
Water oxidation to dioxygen is a key step common to most artificial photosynthetic reaction schemes....
In the search for sustainable energy solutions, the idea of artificial photosynthesis has been propo...
New progress towards artificial photosynthetic methods and solar fuels will depend on the discovery ...
We report an efficient molecular light-driven system to oxidize water to oxygen and a kinetic analys...
In artificial photosynthesis, the sun drives water splitting into H2 and O2 or converts CO2 into a u...
In artificial photosynthesis, the sun drives water splitting into H2 and O2 or converts CO2 into a u...
Water oxidation is a key step common to most artificial photosynthetic reaction schemes.[1] It is a ...
As a virtually inexhaustible source, solar energy plays a major role in future global energy scenari...
Photocatalysis, in its broader meaning, indicates catalytic processes initiated by light. The term i...
This thesis describes the development and study of catalysts for redox reactions, which either utili...
Artificial photosynthesis provides a promising solution to the future sustainable energy system. Wat...
Water oxidation is the primary reaction of both natural and artificial photosynthesis. Developing ac...
Development of efficient and economic water oxidation catalysts (WOCs) remains a crucial bottleneck ...
Energy has been a central subject for human development from Homo erectus to date. The massive us...