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Barium Aluminate Powder

Barium Aluminate Powder

Barium Aluminate Powder
Product Number NRE-100070
CAS No. 12004-04-5
Formula BaAl2O4
Molecular Weight 255.29 g/mol
APS <40 µm (Can be Customized)
Purity 99.9%
Colour NA
Density NA
Melting Point NA
Boiling Point ‎NA

Barium Aluminate Powder

Barium aluminate powder has various applications, primarily due to its luminescent properties. Here are some common applications:

Glow-in-the-dark products:

Barium aluminate is often used in the production of glow-in-the-dark or phosphorescent materials. When exposed to light, these materials can store energy and then emit light in darkness. This makes them useful in products like glow-in-the-dark paints, toys, and safety signs.
Emergency exit signs:

The luminescent properties of barium aluminate make it suitable for use in emergency exit signs. These signs absorb ambient light and then release it in the event of a power outage, ensuring visibility in low-light conditions.
Security applications:

Barium aluminate powders are utilized in security-related applications, such as invisible ink and anti-counterfeiting measures. The luminescent features can be used for authentication or identification purposes.
Laser technology:

In laser technology, barium aluminate can be used as a phosphor material. Phosphors are substances that emit light when exposed to radiation. In lasers, phosphors can play a role in the generation and manipulation of light.
Chemical industry:

Barium aluminate may find applications in the chemical industry. However, its use may be limited compared to other barium compounds due to the potential toxicity of barium. Safety considerations are essential when handling any barium-containing materials.
Catalysis:

Barium aluminate can be employed as a catalyst in certain chemical reactions. Catalysts are substances that speed up chemical reactions without being consumed in the process.
Ceramics and glass industry:

Barium compounds, including barium aluminate, are used in the ceramics and glass industry. They can act as fluxes, helping to lower the melting point of materials and improve their properties.

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