We propose a simple method for the efficient and rapid synthesis of one-dimensional hematite (α-Fe2O3) nanostructures based on electrical resistive heating of iron wire under ambient conditions. Typically, 1–5 μm long α-Fe2O3 nanowires were synthesized on a time scale of seconds at temperatures of around 700 ° ⊂. The morphology, structure, and mechanism of formation of the nanowires were studied by scanning and transmission electron microscopies, energy dispersive X-ray spectroscopy, X-ray photoelectron spectroscopy, and Raman techniques. A nanowire growth mechanism based on diffusion of iron ions to the surface through grain boundaries and to the growing wire tip through stacking fault defects and due to surface diffusion is proposed
Vertically aligned iron oxide nanobelt and nanowire arrays have been synthesized on a large-area sur...
Hematite Fe2O3 exhibits great potential in lithium ion battery area as anode material, due to high c...
Hematite (a-Fe2O3) is one of the most promising photoanode materials for photoelectrochemical water ...
We propose a simple method for the efficient and rapid synthesis of one-dimensional hematite (α-Fe2O...
We propose a simple method for the efficient and rapid synthesis of one-dimensional hematite (α-Fe2O...
It is difficult to obtain γ-Fe2O3 nanostructures by heating iron substrate in ambient conditions bec...
By carefully controlling the reacting conditions, including atmosphere, temperature., and reacting t...
Bicrystalline nanowires of hematite (alpha-Fe(2)O(3)) have been successfully synthesized by the oxid...
In this work, a simple method for the efficient and rapid synthesis of onedimensional hematite (α-Fe...
Pre-annealing as part of a two-step thermal oxidation process has a significant effect on the growth...
A simple synthesis method is proposed for producing aligned and uniform single-crystal one-dimension...
Pre-annealing as part of a two-step thermal oxidation process has a significant effect on the growth...
Nowadays, iron oxide-based nanostructures are key materials in many technological areas. Their physi...
Nanostructure engineering is of great significance for semiconductor electrode to achieve high photo...
Nanowires (NWs) of metal oxides (Fe2O3, CuO, V2O5 and ZnO) were grown by an efficient non-catalytic ...
Vertically aligned iron oxide nanobelt and nanowire arrays have been synthesized on a large-area sur...
Hematite Fe2O3 exhibits great potential in lithium ion battery area as anode material, due to high c...
Hematite (a-Fe2O3) is one of the most promising photoanode materials for photoelectrochemical water ...
We propose a simple method for the efficient and rapid synthesis of one-dimensional hematite (α-Fe2O...
We propose a simple method for the efficient and rapid synthesis of one-dimensional hematite (α-Fe2O...
It is difficult to obtain γ-Fe2O3 nanostructures by heating iron substrate in ambient conditions bec...
By carefully controlling the reacting conditions, including atmosphere, temperature., and reacting t...
Bicrystalline nanowires of hematite (alpha-Fe(2)O(3)) have been successfully synthesized by the oxid...
In this work, a simple method for the efficient and rapid synthesis of onedimensional hematite (α-Fe...
Pre-annealing as part of a two-step thermal oxidation process has a significant effect on the growth...
A simple synthesis method is proposed for producing aligned and uniform single-crystal one-dimension...
Pre-annealing as part of a two-step thermal oxidation process has a significant effect on the growth...
Nowadays, iron oxide-based nanostructures are key materials in many technological areas. Their physi...
Nanostructure engineering is of great significance for semiconductor electrode to achieve high photo...
Nanowires (NWs) of metal oxides (Fe2O3, CuO, V2O5 and ZnO) were grown by an efficient non-catalytic ...
Vertically aligned iron oxide nanobelt and nanowire arrays have been synthesized on a large-area sur...
Hematite Fe2O3 exhibits great potential in lithium ion battery area as anode material, due to high c...
Hematite (a-Fe2O3) is one of the most promising photoanode materials for photoelectrochemical water ...