Efficient production of hydrogen via water splitting is an important goal that would represent a significant step towards truly sustainable supplies of energy. However, currently available catalysts for water electrolysis are either too low in efficiency or too unstable to be practical in this context. Recognizing the very high stability of manganese phosphate, we describe here a novel catalyst material based on manganese oxide that is both stabilized and sensitized by a surface phosphorylation reaction in an ionic liquid electrodeposition process. XPS and EXAFS data show that the surface of the MnOₓ contains phosphorous at P to Mn ratio of similar to 1:2, indicating that the surface layer contains both phosphate characteristics and oxide c...
Nanoparticulate manganese oxides, formed in Nafion polymer from a series of molecular manganese comp...
The development of a water oxidation catalyst has been a demanding challenge for the realization of ...
Summary: Identifying surface active intermediate species is essential to reveal the catalytic mechan...
A novel method for the electrodeposition of highly active water oxidation catalysts is described. Th...
The storage of solar energy into chemical bonds, such as hydrogen or hydrocarbon fuels, through syst...
Manganese oxide coated carbon fibre paper electrodes (MnOx/CFP), prepared via an easily scalable red...
Manganese oxides (MnOₓ) are considered to be promising catalysts for water oxidation. Electrodeposit...
One of the key catalytic reactions for life on earth, the oxidation of water to molecular oxygen, oc...
A versatile screen-printing method is applied for the preparation of efficient water oxidation catal...
MnOx films electrodeposited under basic, neutral, and acidic conditions from an ionic liquid were in...
Efficient, earth-abundant, and acid-stable catalysts for the oxygen evolution reaction (OER) are mis...
Earth-abundant, environmentally friendly, and low-cost manganese oxide materials are promising resou...
The development of a water oxidation catalyst has been a demanding challenge for the realization of ...
Inspired by Nature's catalyst, a nano-size layered manganese-calcium oxide showed a low overvoltage ...
This is the published version. ©Copyright Royal Society of Chemistry 2015Inspired by Nature's cataly...
Nanoparticulate manganese oxides, formed in Nafion polymer from a series of molecular manganese comp...
The development of a water oxidation catalyst has been a demanding challenge for the realization of ...
Summary: Identifying surface active intermediate species is essential to reveal the catalytic mechan...
A novel method for the electrodeposition of highly active water oxidation catalysts is described. Th...
The storage of solar energy into chemical bonds, such as hydrogen or hydrocarbon fuels, through syst...
Manganese oxide coated carbon fibre paper electrodes (MnOx/CFP), prepared via an easily scalable red...
Manganese oxides (MnOₓ) are considered to be promising catalysts for water oxidation. Electrodeposit...
One of the key catalytic reactions for life on earth, the oxidation of water to molecular oxygen, oc...
A versatile screen-printing method is applied for the preparation of efficient water oxidation catal...
MnOx films electrodeposited under basic, neutral, and acidic conditions from an ionic liquid were in...
Efficient, earth-abundant, and acid-stable catalysts for the oxygen evolution reaction (OER) are mis...
Earth-abundant, environmentally friendly, and low-cost manganese oxide materials are promising resou...
The development of a water oxidation catalyst has been a demanding challenge for the realization of ...
Inspired by Nature's catalyst, a nano-size layered manganese-calcium oxide showed a low overvoltage ...
This is the published version. ©Copyright Royal Society of Chemistry 2015Inspired by Nature's cataly...
Nanoparticulate manganese oxides, formed in Nafion polymer from a series of molecular manganese comp...
The development of a water oxidation catalyst has been a demanding challenge for the realization of ...
Summary: Identifying surface active intermediate species is essential to reveal the catalytic mechan...