Bismuth Vanadate Sputtering Targets
Bismuth Vanadate Sputtering Targets
Bismuth Vanadate Sputtering Targets | |
Product No | NRE-43342 |
CAS No. | 14059-33-7 |
Formula | BiVO4 |
Molecular Weight | 323.918 g·mol−1 |
Purity | >99.9% |
Density | 6.1 g/cm3 |
Thickness | 3 mm ± 0.5mm (can be customized) |
Diameter | 50 mm ± 1mm (can be customized) |
Shape | Round |
Resistivity | NA |
Thermal Conductivity | NA |
Bismuth Vanadate Sputtering Targets
Bismuth vanadate (BiVO₄) sputtering targets are used to deposit thin films of bismuth vanadate, a material with a range of notable properties and applications.
Photocatalysis:
Application: Bismuth vanadate is widely studied for its photocatalytic properties, which involve the ability to drive chemical reactions under light.
Products: Thin films of BiVO₄ are used in photocatalytic applications such as water splitting and the degradation of organic pollutants. These applications leverage BiVO₄’s ability to generate reactive species when exposed to light, making it useful for environmental cleanup and sustainable energy solutions.
Solar Energy Harvesting:
Application: BiVO₄ is used in thin-film solar cells due to its photocatalytic and semiconductor properties.
Products: Thin films of BiVO₄ are employed in solar cell devices where they can help convert sunlight into electrical energy. The material’s band gap and photocatalytic efficiency contribute to its effectiveness in photovoltaic applications.
Optoelectronics:
Application: BiVO₄ films are used in optoelectronic devices due to their optical properties.
Products: Thin films can be utilized in optical sensors, light-emitting devices, and other optoelectronic applications where control over light and electronic signals is essential.
High-Performance Catalysts:
Application: Bismuth vanadate serves as a catalyst in various chemical reactions due to its unique catalytic properties.
Products: BiVO₄ thin films are used in catalytic applications where high efficiency and stability are required, such as in industrial chemical processes.
Material Science Research:
Application: BiVO₄ sputtering targets are used in research to study and develop new materials with specific properties.
Products: Researchers use sputtered BiVO₄ thin films to explore the effects of different deposition conditions on the material’s properties, contributing to advancements in material science and technology.
Gas Sensors:
Application: BiVO₄ can be used in gas sensing applications due to its sensitivity to various gases.
Products: Thin films are employed in sensors to detect and measure concentrations of specific gases, benefiting from BiVO₄’s responsiveness and stability.
Battery and Energy Storage Systems:
Application: BiVO₄ is being explored for use in battery and energy storage technologies.
Products: Thin films can be used in battery electrodes or other energy storage components where high stability and efficient energy storage are required