In transition-metal complexes, the geometric structure is intimately connected with the spin state arising from magnetic coupling between the paramagnetic ions. The tetramanganese–calcium cofactor that catalyzes biological water oxidation in photosystem II cycles through five catalytic intermediates, each of which adopts a specific geometric and electronic structure and is thus characterized by a specific spin state. Here, we review spin–structure correlations in Nature’s water-splitting catalyst. The catalytic cycle of the Mn4O5Ca cofactor can be described in terms of spin-dependent reactivity. The lower “inactive” S states of the catalyst, S0 and S1, are characterized by low-spin ground states, SGS = 1/2 and SGS = 0. This is connected to ...
International audienceIn Photosystem II (PSII), the Mn4CaO5-cluster of the active site advances thro...
<p>Magneto-structural correlations in oxygen-evolving complex (OEC) of photosystem II (PSII) have be...
International audienceIn Photosystem II (PSII), the Mn4CaO5-cluster of the active site advances thro...
In transition-metal complexes, the geometric structure is intimately connected with the spin state a...
The Mn4CaO5 cluster in Photosystem II catalyzes the four-electron redox reaction of water oxidation ...
The Mn4CaO5 cluster in Photosystem II catalyzes the four-electron redox reaction of water oxidation ...
Among the four photo-driven transitions of the water-oxidizing tetramanganese–calcium cofactor of bi...
Among the four photo-driven transitions of the water-oxidizing tetramanganese–calcium cofactor of b...
Among the four photo-driven transitions of the water-oxidizing tetramanganese-calcium cofactor of bi...
Nature’s water splitting cofactor passes through a series of catalytic intermediates (S0-S4) before ...
Nature's water splitting cofactor passes through a series of catalytic intermediates (S-0-S-4) befor...
Photosynthetic water oxidation is catalyzed by a Mn4CaO5-cluster in photosystem II through an S-stat...
An important approach in the design of new environmentally friendly materials is represented by the ...
The Mn(IV)3CaO4 cubane is a structural motif present in the oxygen-evolving complex (OEC) of photosy...
In Photosystem II (PSII), the Mn4CaO5-cluster of the active site advances through five sequential ox...
International audienceIn Photosystem II (PSII), the Mn4CaO5-cluster of the active site advances thro...
<p>Magneto-structural correlations in oxygen-evolving complex (OEC) of photosystem II (PSII) have be...
International audienceIn Photosystem II (PSII), the Mn4CaO5-cluster of the active site advances thro...
In transition-metal complexes, the geometric structure is intimately connected with the spin state a...
The Mn4CaO5 cluster in Photosystem II catalyzes the four-electron redox reaction of water oxidation ...
The Mn4CaO5 cluster in Photosystem II catalyzes the four-electron redox reaction of water oxidation ...
Among the four photo-driven transitions of the water-oxidizing tetramanganese–calcium cofactor of bi...
Among the four photo-driven transitions of the water-oxidizing tetramanganese–calcium cofactor of b...
Among the four photo-driven transitions of the water-oxidizing tetramanganese-calcium cofactor of bi...
Nature’s water splitting cofactor passes through a series of catalytic intermediates (S0-S4) before ...
Nature's water splitting cofactor passes through a series of catalytic intermediates (S-0-S-4) befor...
Photosynthetic water oxidation is catalyzed by a Mn4CaO5-cluster in photosystem II through an S-stat...
An important approach in the design of new environmentally friendly materials is represented by the ...
The Mn(IV)3CaO4 cubane is a structural motif present in the oxygen-evolving complex (OEC) of photosy...
In Photosystem II (PSII), the Mn4CaO5-cluster of the active site advances through five sequential ox...
International audienceIn Photosystem II (PSII), the Mn4CaO5-cluster of the active site advances thro...
<p>Magneto-structural correlations in oxygen-evolving complex (OEC) of photosystem II (PSII) have be...
International audienceIn Photosystem II (PSII), the Mn4CaO5-cluster of the active site advances thro...