The development of efficient, stable, and economic water oxidation catalysts (WOCs) is a forefront topic of sustainable energy research. We newly present a comprehensive three-step approach to systematically investigate challenging relationships among preparative history, properties, and performance in heterogeneous WOCs. To this end, we studied (1) the influence of the preparative method on the material properties and (2) their correlation with the performance as (3) a function of the catalytic test method. Spinel-type Co3O4 was selected as a clear-cut model WOC and synthesized via nine different preparative routes. In search of the key material properties for high catalytic performance, these cobalt oxide samples were characterized with a...
Single-atom cobalt centers on various oxide surfaces (TiO2, MgO, SBA-15, AlPO, and Y-Zeolite) were p...
Spinel oxides have attracted growing interest over the years for catalysing the oxygen evolution rea...
Understanding and mastering the structural evolution of water oxidation electrocatalysts lays the fo...
The development of efficient, stable, and economic water oxidation catalysts (WOCs) is a forefront t...
Water oxidation, the bottleneck of the water splitting reaction, requires the development of stable,...
Artificial photosynthesis is a promising strategy for renewable energy production by converting sunl...
Water oxidation is the bottleneck reaction for overall water splitting as a direct and promising str...
Water oxidation is the “bottleneck” of artificial photosynthesis on the way to clean and sustainable...
2018 Summer.Includes bibliographical references.Generation of hydrogen as a fuel is one of the most ...
In this work, a statistical design and analysis platform was used to develop cobalt oxide based oxid...
The hydrothermal growth of cobalt oxide spinel (Co₃O₄) nanocrystals from cobalt acetate precursors w...
The hydrothermal growth of cobalt oxide spinel (Co3O4) nanocrystals from cobalt acetate precursors w...
The homogeneity of molecular Co-based wateroxidation catalysts (WOCs) has been a subject of debate o...
The oxygen evolution reaction (OER) is a key bottleneck step of artificial photosynthesis and an ess...
The observed water oxidation activity of the compound class Co4O4(OAc)4(Py–X)4 emanates from a Co(II...
Single-atom cobalt centers on various oxide surfaces (TiO2, MgO, SBA-15, AlPO, and Y-Zeolite) were p...
Spinel oxides have attracted growing interest over the years for catalysing the oxygen evolution rea...
Understanding and mastering the structural evolution of water oxidation electrocatalysts lays the fo...
The development of efficient, stable, and economic water oxidation catalysts (WOCs) is a forefront t...
Water oxidation, the bottleneck of the water splitting reaction, requires the development of stable,...
Artificial photosynthesis is a promising strategy for renewable energy production by converting sunl...
Water oxidation is the bottleneck reaction for overall water splitting as a direct and promising str...
Water oxidation is the “bottleneck” of artificial photosynthesis on the way to clean and sustainable...
2018 Summer.Includes bibliographical references.Generation of hydrogen as a fuel is one of the most ...
In this work, a statistical design and analysis platform was used to develop cobalt oxide based oxid...
The hydrothermal growth of cobalt oxide spinel (Co₃O₄) nanocrystals from cobalt acetate precursors w...
The hydrothermal growth of cobalt oxide spinel (Co3O4) nanocrystals from cobalt acetate precursors w...
The homogeneity of molecular Co-based wateroxidation catalysts (WOCs) has been a subject of debate o...
The oxygen evolution reaction (OER) is a key bottleneck step of artificial photosynthesis and an ess...
The observed water oxidation activity of the compound class Co4O4(OAc)4(Py–X)4 emanates from a Co(II...
Single-atom cobalt centers on various oxide surfaces (TiO2, MgO, SBA-15, AlPO, and Y-Zeolite) were p...
Spinel oxides have attracted growing interest over the years for catalysing the oxygen evolution rea...
Understanding and mastering the structural evolution of water oxidation electrocatalysts lays the fo...