AbstractThe water-oxidizing complex (WOC), also known as the oxygen-evolving complex (OEC), of photosystem II in oxygenic photosynthetic organisms efficiently catalyzes water oxidation. It is, therefore, responsible for the presence of oxygen in the Earth's atmosphere. The WOC is a manganese–calcium (Mn4CaO5(H2O)4) cluster housed in a protein complex. In this review, we focus on water exchange chemistry of metal hydrates and discuss the mechanisms and factors affecting this chemical process. Further, water exchange rates for both the biological cofactor and synthetic manganese water splitting are discussed. The importance of fully unveiling the water exchange mechanism to understand the chemistry of water oxidation is also emphasized here. ...
Photosynthetic O₂ production from water is catalyzed by a cluster of four manganese ions and a tyros...
A presentation of this work was named a winner of the Meek Undergraduate Poster Session in 2009.In t...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O-2 of Earth atmos...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O2 of Earth atmosp...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O2 of Earth atmosp...
All cyanobacteria, algae, and plants use a similar water-oxidizing catalyst for water oxidation. Thi...
Abstract“Back to Nature” is a promising way to solve the problems that we face today, such as air po...
Biological water oxidation, performed by a single enzyme, photosystem II, is a central research topi...
In reaction sequences for light driven water-splitting into H2 and O2, water- oxidation is a crucial...
AbstractPhotosynthetic O2 production from water is catalyzed by a cluster of four manganese ions and...
AbstractThis brief article aims at presenting a concise summary of all experimental findings regardi...
The synthesis of efficient water-oxidation catalysts demands insight into the only known, naturally ...
Photosystem II catalyzes the photosynthetic oxidation of water to O 2. The structural and functiona...
Water oxidation is pivotal in biological photosynthesis, where it is catalyzed by a protein-bound me...
© 2016 Elsevier B.V. Plants, algae and cyanobacteria capture sunlight, extracting electrons from H2O...
Photosynthetic O₂ production from water is catalyzed by a cluster of four manganese ions and a tyros...
A presentation of this work was named a winner of the Meek Undergraduate Poster Session in 2009.In t...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O-2 of Earth atmos...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O2 of Earth atmosp...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O2 of Earth atmosp...
All cyanobacteria, algae, and plants use a similar water-oxidizing catalyst for water oxidation. Thi...
Abstract“Back to Nature” is a promising way to solve the problems that we face today, such as air po...
Biological water oxidation, performed by a single enzyme, photosystem II, is a central research topi...
In reaction sequences for light driven water-splitting into H2 and O2, water- oxidation is a crucial...
AbstractPhotosynthetic O2 production from water is catalyzed by a cluster of four manganese ions and...
AbstractThis brief article aims at presenting a concise summary of all experimental findings regardi...
The synthesis of efficient water-oxidation catalysts demands insight into the only known, naturally ...
Photosystem II catalyzes the photosynthetic oxidation of water to O 2. The structural and functiona...
Water oxidation is pivotal in biological photosynthesis, where it is catalyzed by a protein-bound me...
© 2016 Elsevier B.V. Plants, algae and cyanobacteria capture sunlight, extracting electrons from H2O...
Photosynthetic O₂ production from water is catalyzed by a cluster of four manganese ions and a tyros...
A presentation of this work was named a winner of the Meek Undergraduate Poster Session in 2009.In t...
Cyanobacteria, green algae, and higher plants provide the major part of molecular O-2 of Earth atmos...