Nanowires (NWs) of metal oxides (Fe2O3, CuO, V2O5 and ZnO) were grown by an efficient non-catalytic economically favorable method based on resistive heating of pure metal wires or foils at ambient conditions. The growth rate of iron oxide NWs exceeds 100 nm s−1. Produced NWs were typically 1–5 µm long with diameters from 10 to 50 nm. The produced metal oxide NWs were characterized by means of SEM, TEM, EDX, XPS and Raman techniques. The field emission measurements from the as-produced CuO NWs were found to have a threshold field as low as 4 V µm−1 at 0.01 mA cm−2. The formation mechanism of the NWs is discussed
Using a vapor transport method, ZnO nanowires were selectively synthesized both on tungsten tips as ...
Tuning high density nanostructures by simple and economic method may contribute towards the developm...
Nanostructured materials have received increasing attention because of their high chemical reactivit...
In this research work, brass (Cu - 37.2 wt% Zn) and Cu (99.9 wt%) wires having diameters of 200 μm w...
In this paper, we review the preparation of Fe-group metal oxide nanostructures by the thermal oxida...
Abstractα-Fe2O3nanowires (NWs) were formed by the thermal oxidation of an iron film in air at 3...
In this paper, we review the preparation of Fe-group metal oxide nanostructures by the thermal oxida...
We propose a simple method for the efficient and rapid synthesis of one-dimensional hematite (α-Fe2O...
Zinc oxide nano wire have been produced by simple thermal way heating Zn powder on alumina substrate...
We propose a simple method for the efficient and rapid synthesis of one-dimensional hematite (α-Fe2O...
Zinc oxide nanowires have been synthesized using a hot tube vacuum evaporation method. Essentially, ...
The synthesis of carbon nanotubes (CNTs) and metal-oxide nanowires (e.g. ZnO, WO2.9) are examined ex...
One-dimensional nanostructures such as nanowires have been extensively investigated as a promising t...
By carefully controlling the reacting conditions, including atmosphere, temperature., and reacting t...
High quality ZnO nanowires were synthesized at high temperature without using heterogenous catalysts...
Using a vapor transport method, ZnO nanowires were selectively synthesized both on tungsten tips as ...
Tuning high density nanostructures by simple and economic method may contribute towards the developm...
Nanostructured materials have received increasing attention because of their high chemical reactivit...
In this research work, brass (Cu - 37.2 wt% Zn) and Cu (99.9 wt%) wires having diameters of 200 μm w...
In this paper, we review the preparation of Fe-group metal oxide nanostructures by the thermal oxida...
Abstractα-Fe2O3nanowires (NWs) were formed by the thermal oxidation of an iron film in air at 3...
In this paper, we review the preparation of Fe-group metal oxide nanostructures by the thermal oxida...
We propose a simple method for the efficient and rapid synthesis of one-dimensional hematite (α-Fe2O...
Zinc oxide nano wire have been produced by simple thermal way heating Zn powder on alumina substrate...
We propose a simple method for the efficient and rapid synthesis of one-dimensional hematite (α-Fe2O...
Zinc oxide nanowires have been synthesized using a hot tube vacuum evaporation method. Essentially, ...
The synthesis of carbon nanotubes (CNTs) and metal-oxide nanowires (e.g. ZnO, WO2.9) are examined ex...
One-dimensional nanostructures such as nanowires have been extensively investigated as a promising t...
By carefully controlling the reacting conditions, including atmosphere, temperature., and reacting t...
High quality ZnO nanowires were synthesized at high temperature without using heterogenous catalysts...
Using a vapor transport method, ZnO nanowires were selectively synthesized both on tungsten tips as ...
Tuning high density nanostructures by simple and economic method may contribute towards the developm...
Nanostructured materials have received increasing attention because of their high chemical reactivit...