Photosynthetic water oxidation takes place at the Mn4CaO5 cluster in photosystem II through a light-driven cycle of intermediates called S states (S0–S4). To unravel the mechanism of water oxidation, it is essential to understand the coupling of electron- and proton-transfer reactions during the S-state transitions. Here, we monitored the reaction process in the S0 → S1 transition using time-resolved infrared (TRIR) spectroscopy. The TRIR signals of the pure contribution of the S0 → S1 transition was obtained by measurement upon a flash after dark adaptation following three flashes. The S0 → S1 traces at the vibrational frequencies of carboxylate groups and hydrogen bond networks around the Mn4CaO5 cluster showed a single phase with a time ...
In the D1-D61N mutant, it was possible to resolve a clear lag phase prior to the appearance of O2, i...
In biological water oxidation, a redox-active tyrosine residue (D1-Tyr161 or YZ) mediates electron t...
The active site of photosynthetic water oxidation by Photosystem II (PSII) is a manganese–calcium cl...
Photosynthetic oxygen evolution by plants and cyanobacteria is performed by water oxidation at the M...
Water oxidation in photosynthetic organisms occurs through the five intermediate steps S0-S4 of the ...
In natural photosynthesis, the light-driven splitting of water into electrons, protons and molecular...
In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by th...
In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by th...
Proton transfer using water bridges has been observed in bulk water, acid-base reactions, and severa...
In photosynthesis, the light-driven oxidation of water is a sustainable process, which converts sola...
Water oxidation by cyanobacteria, algae, and plants is pivotal in oxygenic photosynthesis, the proce...
Oxygenic photosynthesis produces nearly all the O2 on Earth and sustains nearly all of its biomass. ...
AbstractPhotosynthetic water oxidation, which provides the electrons necessary for CO2 reduction and...
The intricate orchestration of electron transfer (ET) and proton transfer (PT) at the Mn<sub>4</sub>...
AbstractPhotosystem II catalyzes photosynthetic water oxidation in plants, green algae, and cyanobac...
In the D1-D61N mutant, it was possible to resolve a clear lag phase prior to the appearance of O2, i...
In biological water oxidation, a redox-active tyrosine residue (D1-Tyr161 or YZ) mediates electron t...
The active site of photosynthetic water oxidation by Photosystem II (PSII) is a manganese–calcium cl...
Photosynthetic oxygen evolution by plants and cyanobacteria is performed by water oxidation at the M...
Water oxidation in photosynthetic organisms occurs through the five intermediate steps S0-S4 of the ...
In natural photosynthesis, the light-driven splitting of water into electrons, protons and molecular...
In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by th...
In oxygenic photosynthesis, light-driven oxidation of water to molecular oxygen is carried out by th...
Proton transfer using water bridges has been observed in bulk water, acid-base reactions, and severa...
In photosynthesis, the light-driven oxidation of water is a sustainable process, which converts sola...
Water oxidation by cyanobacteria, algae, and plants is pivotal in oxygenic photosynthesis, the proce...
Oxygenic photosynthesis produces nearly all the O2 on Earth and sustains nearly all of its biomass. ...
AbstractPhotosynthetic water oxidation, which provides the electrons necessary for CO2 reduction and...
The intricate orchestration of electron transfer (ET) and proton transfer (PT) at the Mn<sub>4</sub>...
AbstractPhotosystem II catalyzes photosynthetic water oxidation in plants, green algae, and cyanobac...
In the D1-D61N mutant, it was possible to resolve a clear lag phase prior to the appearance of O2, i...
In biological water oxidation, a redox-active tyrosine residue (D1-Tyr161 or YZ) mediates electron t...
The active site of photosynthetic water oxidation by Photosystem II (PSII) is a manganese–calcium cl...