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Barium Sulfate (BaSO4) Nanoparticles

Barium Sulfate (BaSO4) Nanoparticles

Product Details:

  • Melting Point 1580 C
  • Purity(%) 99%
  • Boiling point Not Applicable (Decomposes)
  • Particle Size 20-50 nm
  • Usage & Applications Paints, Plastics, Coatings, Pigments, Biomedical, Ceramics, Additives
  • Grade Industrial Grade
  • Metal Type Non-metallic Inorganic
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Barium Sulfate (BaSO4) Nanoparticles Price And Quantity

Barium Sulfate (BaSO4) Nanoparticles Product Specifications

  • Nanoparticle
  • 99%
  • Spherical
  • Barium Sulfate
  • 1580 C
  • White
  • 20-50 nm
  • Paints, Plastics, Coatings, Pigments, Biomedical, Ceramics, Additives
  • 4.5 Gram per cubic centimeter(g/cm3)
  • Not Applicable (Decomposes)
  • Barium Sulfate (BaSO4), Nanostructured
  • N/A (Nanoparticle)
  • As required
  • Non-metallic Inorganic
  • Inorganic Nanopowder
  • Industrial Grade

Barium Sulfate (BaSO4) Nanoparticles Trade Information

  • Cash in Advance (CID), Cheque, Cash Advance (CA)
  • 50000 , Per Year
  • 7 Week
  • Australia, Central America, Eastern Europe, Africa, Middle East, South America, Western Europe, Asia, North America

Product Description

Barium Sulfate (BaSO4) Nanoparticles

MF:

BaSO4

Chemical Name:

Barium Sulfate

Purity:

> 99.99%

APS:

200-500 nm (Size Customization possible)

Form:

Nanopowder

Product Number:

#NCZ701

CAS Number

7727-43-7




Versatile Applications Across Industries

Barium Sulfate Nanoparticles are highly sought after for their applicability in a range of sectors, including paints, plastics, coatings, pigments, ceramics, biomedical products, and as functional additives. Their small particle size and high refractive index enhance the dispersion and visual properties of finished materials, making them invaluable to manufacturers and innovators alike.


Stable, High-Purity Nanomaterial

Manufactured at 99% purity, BaSO4 nanoparticles boast consistent chemical composition and stability. Their orthorhombic crystal structure and high surface area contribute to enhanced performance in specialized applications, maintaining structural and chemical reliability over a storage period of 24 months if kept in recommended conditions.


Optimized for Safe Handling and Storage

To preserve quality and extend shelf life, store Barium Sulfate Nanoparticles in a tightly sealed container placed in a cool, dry environment. This prevents moisture contamination and ensures the powder retains its efficacy and safety, whether you are dealing with small laboratory quantities or large-scale industrial batches.

FAQs of Barium Sulfate (BaSO4) Nanoparticles:


Q: How can Barium Sulfate (BaSO4) Nanoparticles be used in industrial applications?

A: Barium Sulfate Nanoparticles serve as valuable additives in paints, plastics, coatings, pigments, ceramics, and biomedical fields. Their high refractive index and stability are particularly beneficial for enhancing opacity, gloss, and durability in these products.

Q: What are the recommended storage conditions for BaSO4 Nanoparticles to ensure maximum shelf life?

A: Store BaSO4 Nanoparticles in tightly sealed packaging in a cool, dry place. Proper storage prevents moisture contact and degradation, allowing for a shelf life of up to 24 months.

Q: When should I consider using BaSO4 Nanoparticles instead of traditional barium sulfate?

A: Use BaSO4 Nanoparticles when fine particle size, high surface area, or enhanced dispersion are desired, as is often required in precision coatings, advanced composites, and biomedical materials.

Q: Where can these nanoparticles be sourced in India?

A: BaSO4 Nanoparticles are available through various channels in India, including manufacturers, exporters, importers, suppliers, and wholesalers who specialize in industrial nanomaterials.

Q: What benefits do the nanostructured form and high purity of BaSO4 offer?

A: The nanostructured form provides a larger surface area for better interaction and dispersion within matrices, while the 99% purity ensures minimal impurities, resulting in superior performance in end products.

Q: How is the high specific surface area of these nanoparticles advantageous?

A: A high specific surface area enhances reactivity, dispersion, and bonding within different substrates, making them highly effective as fillers and additives in various industrial and biomedical applications.

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