The hydrothermal growth of cobalt oxide spinel (Co3O4) nanocrystals from cobalt acetate precursors was monitored with in situ powder X‐ray diffraction (PXRD) in combination with ex situ electron microscopy and vibrational spectroscopy. Kinetic data from in situ PXRD monitoring were analyzed using Sharp–Hancock and Gualtieri approaches, which both clearly indicate a change of the growth mechanism for reaction temperatures above 185 °C. This mechanistic transition goes hand in hand with morphology changes that notably influence the photocatalytic oxygen evolution activity. Complementary quenching investigations of conventional hydrothermal Co3O4 growth demonstrate that these insights derived from in situ PXRD data provide valuable synthetic g...
Single-atom cobalt centers on various oxide surfaces (TiO2, MgO, SBA-15, AlPO, and Y-Zeolite) were p...
A feasibility study on the incorporation of cobalt into α-Fe2O3 nanorods (NRs) during hydrothermal s...
Water oxidation is the bottleneck reaction for overall water splitting as a direct and promising str...
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...
Artificial photosynthesis is a promising strategy for renewable energy production by converting sunl...
Water oxidation is the “bottleneck” of artificial photosynthesis on the way to clean and sustainable...
The development of efficient, stable, and economic water oxidation catalysts (WOCs) is a forefront t...
In this work, a statistical design and analysis platform was used to develop cobalt oxide based oxid...
Reactive oxygen species (ROS) are considered to be responsible for the high catalytic activity of tr...
Water oxidation, the bottleneck of the water splitting reaction, requires the development of stable,...
A nano-catalyst comprised of oxidized Co NPs supported on MgO nano-plates was synthesized via a hydr...
SSCI-VIDE+ATARI+AAUInternational audienceSpinel cobalt-iron oxide was synthesized by co-precipitatio...
Herein we report on various surface morphological characteristics of the synthesized cobalt oxide (C...
Spinel type cobalt oxide (Co3O4) nanocrystals were controllably synthesized with different morpholog...
Single-atom cobalt centers on various oxide surfaces (TiO2, MgO, SBA-15, AlPO, and Y-Zeolite) were p...
A feasibility study on the incorporation of cobalt into α-Fe2O3 nanorods (NRs) during hydrothermal s...
Water oxidation is the bottleneck reaction for overall water splitting as a direct and promising str...
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...
Artificial photosynthesis is a promising strategy for renewable energy production by converting sunl...
Water oxidation is the “bottleneck” of artificial photosynthesis on the way to clean and sustainable...
The development of efficient, stable, and economic water oxidation catalysts (WOCs) is a forefront t...
In this work, a statistical design and analysis platform was used to develop cobalt oxide based oxid...
Reactive oxygen species (ROS) are considered to be responsible for the high catalytic activity of tr...
Water oxidation, the bottleneck of the water splitting reaction, requires the development of stable,...
A nano-catalyst comprised of oxidized Co NPs supported on MgO nano-plates was synthesized via a hydr...
SSCI-VIDE+ATARI+AAUInternational audienceSpinel cobalt-iron oxide was synthesized by co-precipitatio...
Herein we report on various surface morphological characteristics of the synthesized cobalt oxide (C...
Spinel type cobalt oxide (Co3O4) nanocrystals were controllably synthesized with different morpholog...
Single-atom cobalt centers on various oxide surfaces (TiO2, MgO, SBA-15, AlPO, and Y-Zeolite) were p...
A feasibility study on the incorporation of cobalt into α-Fe2O3 nanorods (NRs) during hydrothermal s...
Water oxidation is the bottleneck reaction for overall water splitting as a direct and promising str...