The series of complexes [Mn(IV)(X-SALPN)(μ 2 -O)] 2 , 1 : X=5-OCH 3 ; 2 : X=H; 3 : X=5-Cl; 4 : X=3,5-diCl; 5 : X=5-NO 2 , contain [Mn 2 O 2 ] 4+ cores with Mn-Mn separations of 2.7 Å. These molecules can be protonated to form [Mn(IV)(X-SALPN)(μ 2 -O,OH)] 2 + in which a bridging oxide is protonated. The pK a values for the series of [Mn(IV)(X-SALPN)(μ 2 -O,OH)] 2 + track linearly versus the shift in redox potential with a slope of 84 mV/pKa. This observation suggests that the [Mn 2 O 2 ] 4+ core can be considered as a unit in which the free energy of protonation is directly related to the ability to reduce the Mn(IV) ion. The marked sensitivity of the reduction potential to the presence of protons presents a mechanism in which an enzyme can ...
Photosystem II (PSII) of photosynthetic organisms converts light energy into chemical energy by oxid...
AbstractThe ultraviolet-visible absorbance differences spectra of Mn(II,III) and Mn(III,III) oxo-bri...
One of the major questions yet to be answered in photosynthesis research today is what is the chemic...
Photosynthetic water oxidation is catalyzed by a Mn4O5Ca cluster with an unprecedented arrangement o...
In nature, the protonation of oxo bridges is a commonly encountered mechanism for fine-tuning chemic...
This dissertation explores the reactivities, properties and structures of manganese complexes as mod...
The protonation state of oxo bridges in nature is of profound importance for a variety of enzymes, i...
AbstractPhotosystem II (PSII) is a membrane-bound protein complex that oxidizes water to produce ene...
AbstractPhotosystem II (PSII) is a membrane-bound protein complex that oxidizes water to produce ene...
The structure of the manganese cluster in photosystem II has not yet been elucidated. It is well est...
Photosynthetic water oxidation to form dioxygen occurs using a manganese cluster in the oxygen evolv...
AbstractProtons in the vicinity of the oxygen-evolving manganese cluster in photosystem II were stud...
Photosystem II (PSII) of photosynthetic organisms converts light energy into chemical energy by oxid...
AbstractPhotosynthetic O2 evolutionO2 evolving complex mechanismManganeseChlorideMetal cluste
The redox behavior of two synthetic manganese complexes illustrates a mechanistic aspect of importan...
Photosystem II (PSII) of photosynthetic organisms converts light energy into chemical energy by oxid...
AbstractThe ultraviolet-visible absorbance differences spectra of Mn(II,III) and Mn(III,III) oxo-bri...
One of the major questions yet to be answered in photosynthesis research today is what is the chemic...
Photosynthetic water oxidation is catalyzed by a Mn4O5Ca cluster with an unprecedented arrangement o...
In nature, the protonation of oxo bridges is a commonly encountered mechanism for fine-tuning chemic...
This dissertation explores the reactivities, properties and structures of manganese complexes as mod...
The protonation state of oxo bridges in nature is of profound importance for a variety of enzymes, i...
AbstractPhotosystem II (PSII) is a membrane-bound protein complex that oxidizes water to produce ene...
AbstractPhotosystem II (PSII) is a membrane-bound protein complex that oxidizes water to produce ene...
The structure of the manganese cluster in photosystem II has not yet been elucidated. It is well est...
Photosynthetic water oxidation to form dioxygen occurs using a manganese cluster in the oxygen evolv...
AbstractProtons in the vicinity of the oxygen-evolving manganese cluster in photosystem II were stud...
Photosystem II (PSII) of photosynthetic organisms converts light energy into chemical energy by oxid...
AbstractPhotosynthetic O2 evolutionO2 evolving complex mechanismManganeseChlorideMetal cluste
The redox behavior of two synthetic manganese complexes illustrates a mechanistic aspect of importan...
Photosystem II (PSII) of photosynthetic organisms converts light energy into chemical energy by oxid...
AbstractThe ultraviolet-visible absorbance differences spectra of Mn(II,III) and Mn(III,III) oxo-bri...
One of the major questions yet to be answered in photosynthesis research today is what is the chemic...