Description
Iron Oxide (Fe₂O₃) Nanopowder / Nanoparticles – Alpha Phase (99.9%, 10 nm, Red)
Alpha-phase Iron Oxide (Fe₂O₃) Nanopowder is a high-purity (99.9%) nanomaterial with an average particle size of 10 nm, produced via laser synthesis for exceptional quality and uniformity. Known for its vibrant red color and stable crystalline structure, this material offers excellent chemical stability, magnetic properties, and catalytic performance. Its fine particle size and high surface area make it suitable for a wide range of advanced applications.
Technical Specifications:
Property | Value |
---|---|
Chemical Formula | Fe₂O₃ |
Phase | Alpha |
Purity (%) | 99.9 |
Average Particle Size (APS) | 10 nm |
Color | Red |
Molar Mass | 159.69 g/mol |
Synthesis Method | Laser Synthesized |
Elemental Analysis (ppm):
Element | Content (ppm) | Element | Content (ppm) |
---|---|---|---|
Cu | 55 | P | 49 |
Ca | 58 | Sn | 28 |
Co | 28 | Fe | 82 |
Si | 93 | S | 55 |
Mg | 28 | Ni | 27 |
Al | 18 | Sr | 38 |
K | 88 | Na | 75 |
Al (repeat) | 22 | Cr | 98 |
Mn | 85 | Zn | 52 |
Applications:
Catalysts & Photocatalysts: Suitable for environmental remediation, chemical synthesis, and pollutant degradation.
Magnetic Materials: Used in magnetic recording media, ferrofluids, and magnetic inks.
Sensors: Ideal for gas sensing applications due to its surface reactivity.
Pigments: Red pigment for paints, coatings, ceramics, and cosmetics.
Biomedical: Potential for drug delivery, MRI contrast agents, and hyperthermia treatment (subject to biocompatibility considerations).
Electronics & Energy: Utilized in lithium-ion batteries, solar cells, and other energy storage systems.
Advantages:
Ultra-high purity (99.9%) ensures minimal contamination.
Nanoscale particle size increases surface area and reactivity.
Stable alpha-phase crystalline structure for consistent performance.
Produced via laser synthesis for uniform morphology and narrow particle size distribution.