Manganese-oxo species catalyze key reactions, including C-H bond activation or dioxygen formation in natural photosynthesis. To better understand relevant reaction intermediates, we characterize electronic states and geometric structures of [MnOn]+ manganese-oxo complexes that represent a wide range of manganese oxidation states. To this end, we apply soft X-ray spectroscopy in a cryogenic ion trap, combined with multiconfigurational wavefunction calculations. We identify [MnO2]+ as a rare high-spin manganese(v) oxo complex with key similarities to six-coordinated manganese(v) oxo systems that are proposed as reaction intermediates in catalytic dioxygen bond formation
Manganese model complexes, relevant to the oxygen-evolving complex (OEC) in photosynthesis, were st...
A frequent challenge when dealing with multinuclear transition metal clusters in biology is to deter...
The structure of the manganese cluster in photosystem II has not yet been elucidated. It is well est...
Manganese-oxo species catalyze key reactions, including C-H bond activation or dioxygen formation in...
Manganese–oxo species catalyze key reactions, including C–H bond activation or dioxygen formation in...
Manganese–oxo species catalyze key reactions, including C–H bond activation or dioxygen formation in...
Manganese oxo species catalyze key reactions, including C H bond activation or dioxygen formation in...
Manganese oxo species catalyze key reactions, including C H bond activation or dioxygen formation in...
Manganese oxo species catalyze key reactions, including C H bond activation or dioxygen formation in...
The structural and electronic properties of a series of manganese complexes with terminal oxido liga...
The structural and electronic properties of a series of manganese complexes with terminal oxido liga...
Photosynthetic water oxidation is catalyzed by a Mn4O5Ca cluster with an unprecedented arrangement o...
Photosynthetic water oxidation to form dioxygen occurs using a manganese cluster in the oxygen evolv...
Generation of high-valent oxomanganese complexes through controlled removal of protons and electrons...
Manganese model complexes, relevant to the oxygen-evolving complex (OEC) in photosynthesis, were stu...
Manganese model complexes, relevant to the oxygen-evolving complex (OEC) in photosynthesis, were st...
A frequent challenge when dealing with multinuclear transition metal clusters in biology is to deter...
The structure of the manganese cluster in photosystem II has not yet been elucidated. It is well est...
Manganese-oxo species catalyze key reactions, including C-H bond activation or dioxygen formation in...
Manganese–oxo species catalyze key reactions, including C–H bond activation or dioxygen formation in...
Manganese–oxo species catalyze key reactions, including C–H bond activation or dioxygen formation in...
Manganese oxo species catalyze key reactions, including C H bond activation or dioxygen formation in...
Manganese oxo species catalyze key reactions, including C H bond activation or dioxygen formation in...
Manganese oxo species catalyze key reactions, including C H bond activation or dioxygen formation in...
The structural and electronic properties of a series of manganese complexes with terminal oxido liga...
The structural and electronic properties of a series of manganese complexes with terminal oxido liga...
Photosynthetic water oxidation is catalyzed by a Mn4O5Ca cluster with an unprecedented arrangement o...
Photosynthetic water oxidation to form dioxygen occurs using a manganese cluster in the oxygen evolv...
Generation of high-valent oxomanganese complexes through controlled removal of protons and electrons...
Manganese model complexes, relevant to the oxygen-evolving complex (OEC) in photosynthesis, were stu...
Manganese model complexes, relevant to the oxygen-evolving complex (OEC) in photosynthesis, were st...
A frequent challenge when dealing with multinuclear transition metal clusters in biology is to deter...
The structure of the manganese cluster in photosystem II has not yet been elucidated. It is well est...