Conductive TiO2 nanorods via surface coating by antimony doped tin dioxide
-
Add time:08/27/2019 Source:sciencedirect.com
Titanium dioxide (TiO2) has been widely used as the white pigment in paintings and coatings. It is of significance to endow TiO2 powders with the high conductivity to extend its application. In this research, rutile TiO2 nanorods were prepared as the substrate material. Further the surface coating by antimony doped tin dioxide (SbSnO2) shell layers was achieved to obtain conductive TiO2 nanorods. The morphology and structure of TiO2@SbSnO2 nanorods was mainly focused on to obtain high conductivity by optimizing the calcination temperature. When the temperature was properly applied at nearly 500 °C, the calcination led to the fusion and attachment of SbSnO2 crystalline regions on the surface of TiO2 nanorods, forming a continuous intact coating layer and thus getting lower volume electrical resistivity of the composite nanopowder. However, after calcination at 600 °C or higher temperature, the integrity of SbSnO2 shell layers would be destroyed, resulting in the increased electrical resistivity. The conductive TiO2 nanorods obtained at the optimized reaction condition showed a very low resistivity of 52 ± 1.6 Ω cm, in contrast to 105 Ω cm of the pure TiO2. The conductive TiO2 nanorods would be excellent candidate for antistatic or electromagnetic shielding applications in coatings.
We also recommend Trading Suppliers and Manufacturers of antimony dioxide (cas 12786-74-2). Pls Click Website Link as below: cas 12786-74-2 suppliers
Prev:Robust oxidase mimicking activity of protamine-stabilized platinum nanoparticles units and applied for colorimetric sensor of trypsin and inhibitor
Next:Improvement of electrochemical performance of tin dioxide electrodes through manganese and antimony co-doping) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Antimony-doped tin dioxide nanometer powders prepared by the hydrothermal method09/03/2019
- Novel titanium dioxide ceramics containing bismuth and antimony09/02/2019
- Full length articleEngineering the surface structure of porous indium oxide hexagonal nanotubes with antimony trioxide for highly-efficient nitrogen dioxide detection at low temperature09/01/2019
- ReviewAntimony contamination, consequences and removal techniques: A review08/31/2019
- Aqueous tetracycline degradation by coal-based carbon electrocatalytic filtration membrane: Effect of nano antimony-doped tin dioxide coating08/30/2019
- One-step synthesis of antimony-doped tin dioxide nanocrystallites and their property08/29/2019
- Improvement of electrochemical performance of tin dioxide electrodes through manganese and antimony co-doping08/28/2019
-
Health and Chemical more >
-
Related Products


