Manganese oxide (MnOx) electrocatalysts are examined herein by in situ soft X‐ray absorption spectroscopy (XAS) and resonant inelastic X‐ray scattering (RIXS) during the oxidation of water buffered by borate (pH 9.2) at potentials from 0.75 to 2.25 V vs. the reversible hydrogen electrode. Correlation of L‐edge XAS data with previous mechanistic studies indicates MnIV is the highest oxidation state involved in the catalytic mechanism. MnOx is transformed into birnessite at 1.45 V and does not undergo further structural phase changes. At potentials beyond this transformation, RIXS spectra show progressive enhancement of charge transfer transitions from oxygen to manganese. Theoretical analysis of these data indicates increased hybridization o...
The only naturally occurring system that catalyses water oxidation is the Mn4CaO4 cluster of Photosy...
Water oxidation is pivotal in biological photosynthesis, where it is catalyzed by a protein-bound me...
Nature uses an Mn cluster for water oxidation, and thus, water oxidation using Mn clusters is intere...
Manganese oxide (MnOx) electrocatalysts are examined herein by in situ soft X‐ray absorption spectro...
Manganese oxide (MnOx) electrocatalysts are examined herein by in situ soft X-ray absorption spectro...
Summary: Identifying surface active intermediate species is essential to reveal the catalytic mechan...
In situ X-ray absorption spectroscopy (XAS) is a powerful technique that can be applied to electroch...
Manganese oxides with rich redox chemistry have been widely used in (electro)catalysis in applicatio...
Manganese based precious metal-free electrocatalysts for the oxygen evolution reaction (OER) are pro...
Xi L, Schwanke C, Xiao J, Abdi FF, Zaharieva I, Aziz-Lange K. In Situ L-Edge XAS Study of a Manganes...
Soft X-ray absorption and resonant inelastic X-ray scattering at the Mn L-edge are established as to...
Manganese oxo species catalyze key reactions, including C H bond activation or dioxygen formation in...
MnOx films electrodeposited under basic, neutral, and acidic conditions from an ionic liquid were in...
There is an urgent need for cheap, stable, and abundant catalyst materials for photoelectrochemical ...
Manganese oxide (MnOₓ) is considered a promising material for the oxygen evolution reaction (OER) to...
The only naturally occurring system that catalyses water oxidation is the Mn4CaO4 cluster of Photosy...
Water oxidation is pivotal in biological photosynthesis, where it is catalyzed by a protein-bound me...
Nature uses an Mn cluster for water oxidation, and thus, water oxidation using Mn clusters is intere...
Manganese oxide (MnOx) electrocatalysts are examined herein by in situ soft X‐ray absorption spectro...
Manganese oxide (MnOx) electrocatalysts are examined herein by in situ soft X-ray absorption spectro...
Summary: Identifying surface active intermediate species is essential to reveal the catalytic mechan...
In situ X-ray absorption spectroscopy (XAS) is a powerful technique that can be applied to electroch...
Manganese oxides with rich redox chemistry have been widely used in (electro)catalysis in applicatio...
Manganese based precious metal-free electrocatalysts for the oxygen evolution reaction (OER) are pro...
Xi L, Schwanke C, Xiao J, Abdi FF, Zaharieva I, Aziz-Lange K. In Situ L-Edge XAS Study of a Manganes...
Soft X-ray absorption and resonant inelastic X-ray scattering at the Mn L-edge are established as to...
Manganese oxo species catalyze key reactions, including C H bond activation or dioxygen formation in...
MnOx films electrodeposited under basic, neutral, and acidic conditions from an ionic liquid were in...
There is an urgent need for cheap, stable, and abundant catalyst materials for photoelectrochemical ...
Manganese oxide (MnOₓ) is considered a promising material for the oxygen evolution reaction (OER) to...
The only naturally occurring system that catalyses water oxidation is the Mn4CaO4 cluster of Photosy...
Water oxidation is pivotal in biological photosynthesis, where it is catalyzed by a protein-bound me...
Nature uses an Mn cluster for water oxidation, and thus, water oxidation using Mn clusters is intere...