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High-Purity Boron B Particles Granule for Research and Laboratory Materials

Element Symbol: B-Ev
CAS: 7440-42-8
Model: Sup-B-Ev
Purity: 4N, 3N5,3N
Shape: Particles
Thickness: [N/A]
Dimension: [N/A]
(Note: Purity, shape, thickness, and dimensions can all be customized)

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Product Details:

Melting Point: 2100°C  

Density: 2.36 g/cm³  

Specifications: 3-8 mm  

Purity: 2N5  

Evaporation Method: eBeam (Xlnt)  

Crucible Material: Graphite, W  

Note: Can react with graphite and tungsten crucible linings; requires high power for evaporation.

Applications of Boron B Particles:

1. Sputtering Deposition

   - Thin Film Material: Boron is widely used in sputtering deposition processes as a component of thin film materials. It can be used to manufacture various functional films, such as conductive films and anti-reflective coatings, which are extensively applied in the production of electronic devices and optical components.

 2. Semiconductor Materials

   - Dopant: Boron is commonly used as a dopant in semiconductor materials, particularly in silicon (Si). It enhances the electrical conductivity of the material and creates p-type semiconductors, which are crucial for the manufacturing of diodes, transistors, and other electronic components.

 3. Glass and Ceramics

   - Borosilicate Glass: Boron is used in the production of borosilicate glass, which possesses excellent thermal shock resistance and chemical corrosion resistance, making it suitable for laboratory glassware and kitchenware.

   - Ceramic Materials: Boron compounds can improve the strength and durability of ceramic materials, making them suitable for high-temperature applications.

 4. Metallurgy

   - Alloying Agent: Boron is added to steel and other alloys to enhance their hardness, strength, and wear resistance, particularly in high-performance steel applications.

   - Welding Rods: Boron is used in the production of welding rods to improve welding performance.

 5. Nuclear Applications

   - Neutron Absorption: Boron is used in control rods for nuclear reactors because of its ability to effectively absorb neutrons, helping to regulate nuclear fission.

 6. Agriculture

   - Fertilizers: Boron is an essential micronutrient for plant growth. Boron compounds are used in fertilizers to promote healthy growth and improve crop yields.

 7. Pharmaceuticals

   - Drug Delivery Systems: Boron-containing compounds are being researched for their potential in drug delivery and cancer treatment due to their ability to target specific cells.

 8. Chemical Industry

   - Boric Acid: Used as an antiseptic, insecticide, and in pH buffering in swimming pools and cosmetics.

   - Boranes: Used as reducing agents in organic synthesis and chemical reactions.

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