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Vanadium Fluoride Powder

Vanadium Fluoride Powder

Vanadium Fluoride Powder
Product No NRE-11279
CAS 10049-16-8
Purity 99.9%
Formula VF4
APS <40 µm (can be customized)
Color lime green
Molecular Weight 126.93 g/mol
Density 2.975 g/cm3
Melting Point 325 °C
Boiling Point NA

Vanadium Fluoride Powder

Applications of Vanadium Fluoride Powder

Energy Storage and Battery Technologies:

Vanadium fluoride powder is used in the development of advanced lithium-ion batteries and solid-state batteries. It is used as an electrode material or as part of the electrolyte in rechargeable energy storage systems.

In vanadium redox flow batteries (VRFBs), vanadium fluoride serves as a precursor for the production of other vanadium compounds used in energy storage. These batteries are known for their ability to store large amounts of energy and offer long cycle life, making them suitable for grid energy storage.

Catalysis:

Vanadium fluoride is employed as a catalyst or catalyst precursor in various chemical reactions. It is especially useful in organic synthesis, where it can catalyze fluorination reactions or act as a component in catalytic processes for producing fluorinated organic compounds.

It is also used in the refining of petroleum and in processes that require specific catalytic behavior for the synthesis of fine chemicals.

Materials Science and Metallurgy:

Vanadium fluoride is used in the synthesis of vanadium-based alloys. These alloys, which may incorporate vanadium fluoride, are valued for their high strength, heat resistance, and corrosion resistance, making them ideal for aerospace, automotive, and industrial applications.

In metallurgical processes, vanadium fluoride is used as a fluxing agent or as part of the manufacturing of vanadium-bearing steel.

Fluorine Chemistry:

Vanadium fluoride serves as a source of fluorine in chemical processes. This is particularly useful in the fluorination of organic compounds (e.g., pharmaceuticals, agrochemicals, and polymers), where fluorine atoms need to be precisely introduced into molecules.

It can also be used to prepare fluorine gas in certain industrial processes.

Research and Development:

Researchers are exploring the potential of vanadium fluoride in superconductivity and quantum computing due to its unique electronic properties. It is a subject of interest for the development of new materials that can support advanced technologies.

In the development of new superconducting materials or in the context of magnetism and electron transport, VF₃ can be part of experimental compositions for future high-tech applications.

Surface Treatment and Coatings:

Vanadium fluoride is used in surface treatments for metals and other materials to improve wear resistance and corrosion resistance. It can be applied as a coating to enhance the durability and lifespan of components exposed to harsh environments.

 

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