In this work we report a synthetic pathway to two-dimensional nanostructures of high oxidation state lamellar cobalt oxides with thicknesses of only few atom layers, through the combined use of precipitation in basic water at room temperature and gentle solid state topotactic transformation at 120 °C. The 2D nanomaterials are characterized by X-ray diffraction, nitrogen porosimetry, scanning electron microscopy, transmission electron microscopy and especially scanning transmission electron microscopy coupled to energy dispersive X-ray analysis and electron energy loss spectroscopy to assess the composition of the nanosheets and the oxidation state of the transition metal species. We show that the nanosheets preserve high oxidation states Co...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
The industrial application of water splitting for oxygen evolution requires low cost, high performan...
Engineering the surface structure at the atomic level can be used to precisely and effectively manip...
International audienceIn this work we report a synthetic pathway to two-dimensional nanostructures o...
Two-dimensional (2D) nanomaterials are one of the most promising types of candidates for energy-stor...
Development of a cost-effective and efficient electrocatalyst for the sluggish oxygen reduction reac...
NiCo2O4 nanorods (assembled with small nanoparticles) with different aspect ratios were synthesized ...
Room temperature liquid metals based on Ga can be used as a synthesis medium for the creation of met...
Anion exchange membrane water electrolysis (AEMWE) is a promising technology for renewable electrici...
Developing high-performance and low-cost electrode for oxygen evolution reaction (OER) is a crucial ...
Highly porous 3d transition metal oxide nanostructures are opening up the exciting area of oxygen ev...
A facile hydrothermal synthesis route was explored to obtain various nanostructures of Co oxide for ...
A class of novel nickel cobalt oxide hollow nanosponges were synthesized through a sodium borohydrid...
[[abstract]]The layered sodium cobaltates -NaxCoO2 show low electrical conductivity and large thermo...
The oxygen evolution reaction (OER) limits the energy efficiency of electrocatalytic systems due to ...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
The industrial application of water splitting for oxygen evolution requires low cost, high performan...
Engineering the surface structure at the atomic level can be used to precisely and effectively manip...
International audienceIn this work we report a synthetic pathway to two-dimensional nanostructures o...
Two-dimensional (2D) nanomaterials are one of the most promising types of candidates for energy-stor...
Development of a cost-effective and efficient electrocatalyst for the sluggish oxygen reduction reac...
NiCo2O4 nanorods (assembled with small nanoparticles) with different aspect ratios were synthesized ...
Room temperature liquid metals based on Ga can be used as a synthesis medium for the creation of met...
Anion exchange membrane water electrolysis (AEMWE) is a promising technology for renewable electrici...
Developing high-performance and low-cost electrode for oxygen evolution reaction (OER) is a crucial ...
Highly porous 3d transition metal oxide nanostructures are opening up the exciting area of oxygen ev...
A facile hydrothermal synthesis route was explored to obtain various nanostructures of Co oxide for ...
A class of novel nickel cobalt oxide hollow nanosponges were synthesized through a sodium borohydrid...
[[abstract]]The layered sodium cobaltates -NaxCoO2 show low electrical conductivity and large thermo...
The oxygen evolution reaction (OER) limits the energy efficiency of electrocatalytic systems due to ...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
The industrial application of water splitting for oxygen evolution requires low cost, high performan...
Engineering the surface structure at the atomic level can be used to precisely and effectively manip...