
| Purity (%) | 99.995+ | |||||||||||
| Mass Density (g/cm3) | ≤0.95 | |||||||||||
| Color | light blue | |||||||||||
| Average Particle Size (nm) | 28 | |||||||||||
| Electrical Conductivity (Ω) | 108 | |||||||||||
| Resistivity (Ω.cm) | 50 | |||||||||||
| Thermal Resistance (oC): | 1100 | |||||||||||
| Specific Surface Area (m2/g): | >95 | |||||||||||
| Loss on Drying (%) | 0.5 | |||||||||||
| PH | 4.0~7.0 | |||||||||||
| Element Analysis | As | Cd | Pb | Ni | Bi | Zn | K | Al | Cu | Ag | Fe | In |
| <2 ppm | <2 ppm | <32 ppm | <5 ppm | <9 ppm | <5 ppm | <7 ppm | <2 ppm | <28 ppm | <2 ppm | <19 ppm | <8 ppm |
Antimony Tin Oxide nano powder shows excellent electrical and optical properties. It can be used in the field of optoelectronic display devices and flat panel display devices such as LED, LCD and ECD.
It can also be used in solar cells and transparent electrodes. Thanks to its high electrical conductivity, it is suitable for the use of chemical fibers and polymeric membranes as antistatic materials in the coating industry
. Antimony Tin Oxide nanoparticles also have high heat resistance. It can be used to retain heat in buildings or glass and hot mirrors. It can also be used on automobile
windows and airplanes for protection against fog and frost. Antimony Tin Oxide nanoparticles have the ability to reject microwaves. It can be used in areas where protection from electromagnetic waves is required. These areas include
computer rooms and radars.