Antimony Oxide Sputtering Targets
Antimony Oxide Sputtering Targets
Antimony Oxide Sputtering Targets | |
Product No | NRE-43317 |
CAS No. | 1309-64-4 |
Formula | Sb2O3 |
Molecular Weight | 291.52 |
Purity | >99.9% |
Density | NA |
Thickness | 3 mm ± 0.5mm (can be customized) |
Diameter | 50 mm ± 1mm (can be customized) |
Shape | Round |
Resistivity | NA |
Thermal Conductivity | NA |
Antimony Oxide Sputtering Targets
Antimony Oxide Sputtering Target
Antimony oxide sputtering targets are used in a variety of applications where their unique properties can be leveraged. Here’s a more detailed look at their applications:
Optical Coatings: Antimony oxide is used in optical coatings to modify the reflective and transmission properties of surfaces. This is important in applications like antireflective coatings, mirrors, and lenses where precise control of light is required.
Transparent Conductors: In some cases, antimony oxide is used in combination with other materials to create transparent conductive films. These are used in touchscreens, flat-panel displays, and other devices that require transparent yet electrically conductive layers.
Electrochromic Devices: Antimony oxide is used in electrochromic devices, which can change their color or opacity in response to an electric current. This technology is applied in smart windows, mirrors, and displays where variable light transmission is beneficial.
Glass Industry: In the production of specialty glasses, antimony oxide can be used to adjust properties like refractive index and color. This is particularly useful for creating high-quality optical glass and other specialized glass products.
Semiconductor Manufacturing: Antimony oxide sputtering targets are employed in the deposition of thin films used in semiconductor devices. These films can be critical in the production of various electronic components, including sensors and integrated circuits.
Ceramic Coatings: Antimony oxide is used in ceramic coatings to enhance durability, color, and thermal stability. These coatings can be applied to a variety of substrates, including metals and ceramics, to improve their performance in demanding environments.
Catalysts and Catalytic Processes: In certain catalytic applications, antimony oxide can act as a catalyst or be used in catalyst formulations. Its properties can help in processes such as oxidation or reduction reactions.
These diverse applications capitalize on antimony oxide’s unique properties, such as its optical characteristics, electrical conductivity, and chemical stability.