Nano Cobalt Powder (Co) is used as metallurgical products such as cemented carbide, diamond tools, superalloys, magnetic materials, etc. Stanford Advanced Materials (SAM) offers high-quality Nano Materials with competitive pricing.
Related products: CP0248 Micro Cobalt Powder (Co), Cobalt-based Alloy Powder (Co-Cr-W), Tungsten Carbide/Cobalt Powder (WC/Co Powder)
Nano Cobalt Powder (Co) is used as metallurgical products such as cemented carbide, diamond tools, superalloys, magnetic materials, etc. Stanford Advanced Materials (SAM) offers high-quality Nano Materials with competitive pricing.
Related products: CP0248 Micro Cobalt Powder (Co), Cobalt-based Alloy Powder (Co-Cr-W), Tungsten Carbide/Cobalt Powder (WC/Co Powder)
Nano cobalt powder, with its unique properties, such as high surface area, magnetic characteristics, chemical reactivity, electrical conductivity, and mechanical strength, is a versatile material with significant potential in various high-tech applications. Its role in catalysis, magnetic materials, energy storage, alloys, electronics, and biomedical fields highlights its importance and the ongoing research to further exploit its properties for innovative solutions.
CAS Number |
7440-48-4 |
Chemical Formula |
Co |
APS |
50-300nm |
Form |
black powder |
Specific Surface Area (m2/g) |
40.3-10.3 |
Bulk Density (g/cm3) |
0.19-1.23 |
1. Small particle size
2. High surface area
3. High Magnetization
4. Resistance to demagnetization, making it useful in permanent magnet applications
5. Catalytic Activity: The high surface area and reactivity make nano cobalt powder an excellent catalyst in chemical reactions.
6. Oxidation: Nano cobalt powder is prone to oxidation due to its high surface energy, which must be considered when handling and storing the material.
7. Good electrical conductivity
8. High Melting Point
9. Good thermal stability, maintaining its properties under high-temperature conditions.
10. High Strength and Hardness: Nano cobalt powder contributes to the mechanical strength and hardness of composite materials.
Catalysis
• Used as a catalyst in Fischer-Tropsch synthesis for converting syngas into liquid hydrocarbons.
• Effective in hydrogenation reactions and other organic synthesis processes.
Magnetic Materials
• Used in the production of high-performance permanent magnets, magnetic recording media, and magnetic fluids.
• Applied in medical imaging techniques, such as MRI, for enhancing contrast.
Battery and Energy Storage:
• Used in the production of lithium-ion batteries, supercapacitors, and fuel cells due to its good electrical conductivity and catalytic properties.
Alloys and Composites:
• Incorporated into high-performance alloys and composite materials to enhance their mechanical properties, such as strength, hardness, and wear resistance.
• Used in cutting tools, wear-resistant coatings, and high-temperature applications.
Electronics and Optoelectronics:
• Applied in the fabrication of electronic components and devices due to its electrical conductivity and magnetic properties.
• Explored for use in optoelectronic devices, sensors, and other advanced electronic applications.
Biomedical Applications:
• Investigated for use in targeted drug delivery systems, cancer treatment through magnetic hyperthermia, and as contrast agents in medical imaging.
Our Nano Cobalt Powder (Co) is carefully handled during storage and transportation to preserve the quality of our product in its original condition.