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Barium Iron Oxide Nanoparticles

Barium Iron Oxide Nanoparticles

Product Details:

  • Usage & Applications Magnetic materials, Electronic devices, Sensors, Biomedical applications
  • Grade Industrial Grade
  • Melting Point 1530 C
  • Purity(%) 99%
  • Particle Size 40-60 nm
  • Metal Type Mixed Metal Oxide
  • Product Type Nanoparticles
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Barium Iron Oxide Nanoparticles Price And Quantity

Barium Iron Oxide Nanoparticles Product Specifications

  • Nanoparticles
  • Industrial Grade
  • Nanoparticle
  • 5.7 Gram per cubic centimeter(g/cm3)
  • 500 mg (Standard pack)
  • Spherical
  • Magnetic materials, Electronic devices, Sensors, Biomedical applications
  • Brownish
  • Mixed Metal Oxide
  • Barium Iron Oxide
  • 40-60 nm
  • BaFeO3
  • 99%
  • 1530 C

Barium Iron Oxide Nanoparticles Trade Information

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

Product Description

Barium Iron Oxide Nanoparticles

MF:

BaFe12O19

Chemical Name:

Barium Dodecairon Nonadecaoxide

Purity:

> 99.99%

APS:

100 nm (Size Customization possible)

Form:

Nanopowder

Product Number:

#NCZ601

CAS Number

12047-11-9




Enhance Performance with Perovskite-Like Nanomaterials

Barium Iron Oxide Nanoparticles are designed to deliver reliable performance in demanding environments. Their high purity and specialized surface modifications minimize agglomeration, ensuring consistent results in industrial, biomedical, and sensor applications. With excellent magnetic and electronic properties, these nanoparticles offer unique advantages in high-tech fields.


Versatile Applications Across Multiple Industries

Utilized in magnetic materials, electronic devices, sensors, and even biomedical fields, Barium Iron Oxide Nanoparticles can significantly enhance product functionality. Their high thermal stability allows for use in elevated temperature processes, while their ferrimagnetic character unlocks advanced engineering and research potential.

FAQs of Barium Iron Oxide Nanoparticles:


Q: How should Barium Iron Oxide Nanoparticles be stored for optimal stability?

A: Store these nanoparticles in a dry, sealed container at room temperature to maintain stability and prevent moisture absorption or contamination.

Q: What are the primary applications of Barium Iron Oxide Nanoparticles?

A: They are widely employed in magnetic materials, electronic devices, sensors, and select biomedical applications due to their unique structural and magnetic properties.

Q: When is surface modification necessary for these nanoparticles?

A: Surface modification is applied during synthesis to minimize agglomeration, ensuring uniform particle dispersion and enhanced performance in end-use applications.

Q: Where can these nanoparticles be utilized in industry?

A: They find use across sectors such as electronics manufacturing, sensor technology, material research, and medical device development, particularly where high magnetic or thermal stability is required.

Q: What is the synthesis process for Barium Iron Oxide Nanoparticles?

A: These nanoparticles are typically synthesized using Sol-Gel or hydrothermal methods, which enable precise control over crystal structure, size, and purity.

Q: What safety precautions should be taken when handling Barium Iron Oxide Nanoparticles?

A: Handle with care, avoiding inhalation and direct contact. Use appropriate personal protective equipment and conduct work in well-ventilated areas.

Q: What benefits do these nanoparticles offer over conventional materials?

A: Compared to bulk materials, these nanoparticles provide enhanced magnetic, electronic, and thermal properties, as well as a high surface area for more efficient integration into advanced materials and devices.

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