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Catalog Number:
47074
CAS Number:
7439-89-6
Nanopolvo de hierro (60~80 nm)
Purity:
≥ 99,7 % (base de metales traza)
Hazmat
Documents
$168.80 /25G
Tamaño
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Product Information

El nanopolvo de hierro, un material magnéticamente activo versátil con aplicaciones en electrónica, medicina, imágenes, gestión ambiental, almacenamiento de datos y otros campos, se puede obtener con varios diámetros, áreas de superficie, purezas y recubrimientos, y se puede obtener como polvo o suspensión en un solvente como el etanol.

CAS Number
7439-89-6
Purity
≥ 99,7 % (base de metales traza)
Molecular Formula
Molecular Weight
55.85
PubChem ID
23925
Density
Densidad aparente 0,5 g/cm3, densidad real 7,90 g/cm3
Appearance
Pólvora negra
Mesh Size
APS 60~80 nm, SSA 7 m2/g
Conditions
Tienda en RT
General Information
CAS Number
7439-89-6
Purity
≥ 99,7 % (base de metales traza)
Molecular Formula
Molecular Weight
55.85
PubChem ID
23925
Density
Densidad aparente 0,5 g/cm3, densidad real 7,90 g/cm3
Appearance
Pólvora negra
Mesh Size
APS 60~80 nm, SSA 7 m2/g
Conditions
Tienda en RT
Properties
Additional property information coming soon!
-
Safety and Regulations
Hazmat
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

Iron nanopowder (60~80 nm) is widely utilized in research focused on various applications across multiple industries:

  • Biomedical Applications: Iron nanopowder is used in targeted drug delivery systems. Its magnetic properties allow for the precise targeting of drugs to specific tissues, improving treatment efficacy while minimizing side effects.
  • Environmental Remediation: This nanopowder is effective in removing heavy metals and pollutants from water. Its high surface area enhances adsorption capabilities, making it a valuable tool in water treatment processes.
  • Electronics: In the electronics industry, iron nanopowder is employed in the production of magnetic materials and components. Its unique properties contribute to the development of more efficient magnetic storage devices.
  • Energy Storage: Iron nanopowder is used in the fabrication of advanced batteries and supercapacitors. Its high conductivity and electrochemical properties enhance energy storage capabilities, leading to more efficient energy solutions.
  • Composite Materials: This material is incorporated into various composite products to improve mechanical strength and thermal stability. Industries such as automotive and aerospace benefit from the enhanced performance of these composites.

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