The geometric effects of nanostructuring a pure Fe2O3 surface on its electrochemical water oxidation performance at neutral pH were systematically explored. Atomic layer deposition was used to coat the inner walls of cylindrical "anodic" nanopores ordered in parallel arrays with a homogeneous Fe2O3 layer. Annealing and electrochemical treatments generated a roughened surface, as demonstrated by X-ray photoelectron spectroscopy and electrochemical impedance spectroscopy, the larger geometric area of which increases current densities. Combining these treatments with the "anodic" pore geometry delivered an effective increase in turnover by almost three orders of magnitude with respect to a smooth, planar Fe2O3 surface. However, the current den...
The growth behaviour of nanoporous anodic films on iron during galvanostatic anodizing in ethylene g...
Background: Ordered arrays of 1D iron(oxyhydr)oxide nanostructures have potential applications in ma...
Fe3O4 nanoparticles (NPs) with an average size of 8–10 nm have been successfully functionalized with...
The geometric effects of nanostructuring a pure Fe2O3 surface on its electrochemical water oxidatio...
The geometric effects of nanostructuring a pure Fe2O3 surface on its electrochemical water oxidation...
We studied the formation of self-ordered nanopores in the anodization of iron foils. Different anodi...
In this report, we show that by creating a nanoporous haematite (alpha-Fe2O3) structure using boric ...
Background: Quasi-one dimensional nanostructures: nanowires, nanotubes, nanorods, nanobelts/nanoribb...
Different approaches have been explored to increase the water oxidation activity of nanostructured ...
We report great enhancement in photoelectrochemical water splitting efficiency of hematite assisted ...
Nanoporous iridium electrodes are prepared and electrochemically investigated towards the water oxid...
Ion doping in transition metal oxides is always considered to be one of the most effective methods t...
Electrocoagulation (EC) using Fe(0) electrodes is a low cost water treatment technology that relies ...
A conductive SnO2 layer and small quantities of IrO2 surface cocatalyst enhance the catalytic effici...
The fabrication of a thick oxide layer onto an aluminum surface via anodization has been a subject o...
The growth behaviour of nanoporous anodic films on iron during galvanostatic anodizing in ethylene g...
Background: Ordered arrays of 1D iron(oxyhydr)oxide nanostructures have potential applications in ma...
Fe3O4 nanoparticles (NPs) with an average size of 8–10 nm have been successfully functionalized with...
The geometric effects of nanostructuring a pure Fe2O3 surface on its electrochemical water oxidatio...
The geometric effects of nanostructuring a pure Fe2O3 surface on its electrochemical water oxidation...
We studied the formation of self-ordered nanopores in the anodization of iron foils. Different anodi...
In this report, we show that by creating a nanoporous haematite (alpha-Fe2O3) structure using boric ...
Background: Quasi-one dimensional nanostructures: nanowires, nanotubes, nanorods, nanobelts/nanoribb...
Different approaches have been explored to increase the water oxidation activity of nanostructured ...
We report great enhancement in photoelectrochemical water splitting efficiency of hematite assisted ...
Nanoporous iridium electrodes are prepared and electrochemically investigated towards the water oxid...
Ion doping in transition metal oxides is always considered to be one of the most effective methods t...
Electrocoagulation (EC) using Fe(0) electrodes is a low cost water treatment technology that relies ...
A conductive SnO2 layer and small quantities of IrO2 surface cocatalyst enhance the catalytic effici...
The fabrication of a thick oxide layer onto an aluminum surface via anodization has been a subject o...
The growth behaviour of nanoporous anodic films on iron during galvanostatic anodizing in ethylene g...
Background: Ordered arrays of 1D iron(oxyhydr)oxide nanostructures have potential applications in ma...
Fe3O4 nanoparticles (NPs) with an average size of 8–10 nm have been successfully functionalized with...