Carbon Nanotubes Doped with 32 wt% Aluminum (Al) Nanopowder/Nanoparticles
- SKU:
- NG01SC0602
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- Calculated at Checkout
Description
5 grams: 130€
25 grams: 295 €
100 grams: 540€
500 grams: 1350€
1000 grams: 1950€
Please contact us for quotes on larger quantities !!!
Carbon Nanotubes Doped with 32 wt% Aluminum (Al) Nanopowder/Nanoparticles
Carbon Nanotubes doped with 32 wt% Aluminum nanoparticles combine CNTs’ superior electrical conductivity and mechanical resilience with aluminum’s lightweight nature, corrosion resistance, and thermal conductivity. The spherical Al nanoparticles (80 nm, 20–45 m²/g surface area, true density 2.8 g/cm³) are uniformly dispersed within CNT networks, resulting in a hybrid composite with enhanced hardness, tensile strength, specific strength, and elastic modulus. This synergy provides multifunctional performance, making CNT–Al hybrids suitable for energy storage, electronics, biomedical systems, catalysis, and advanced composites.
Technical Properties
| 32 wt% Al Nanopowder/Nanoparticles | |
| Purity | 99.99% |
| Average Particle Size (nm) | 80 |
| Specific Surface Area (m2/g) | 20-45 |
| True Density (g/cm3) | 2,8 |
| Color | black |
| Shape | spherical |
| Carbon Nanotubes (Multi Walled Carbon Nanotubes) | |
| Purity | > 97 wt% |
| Color | black |
| Average Outside Diameter (nm) | > 50 |
| Average Inside Diameter (nm) | 5 |
| Length (µm) | 15-25 |
| Tap Density (g/cm3) | 0.15 |
| True Density (g/cm3) | ~2.4 |
| Specific Surface Area (m2/g) | > 65 |
| Ash | < 1.5 wt% |
| Electrical Conductivity (S/cm) | > 98 |
Applications
- Energy & Storage: CNT–Al hybrids are applied in lithium-ion batteries and supercapacitors where CNTs provide conductive pathways and aluminum enhances electrode stability, cycle life, and thermal management, while hybrid porosity also supports hydrogen storage and efficient charge transfer.
- Electronics & Optoelectronics: These composites are used in transistors, flat panel displays, and solar cells, combining CNT conductivity with aluminum’s thermal and electrical properties to improve charge transport, optical performance, and device reliability, while also supporting photoluminescence and template-based nanofabrication.
- Biomedical & Biosensing: CNT–Al hybrids are explored in biosensors for sensitive detection and in drug delivery systems where aluminum’s biocompatibility and CNT’s functional surfaces enable controlled release, targeting, and nanoprobes for imaging and diagnostics.
- Composites & Structural Materials: In polymer and ceramic composites, CNT–Al hybrids improve tensile strength, hardness, and elastic modulus, making them suitable for aerospace, automotive, and construction applications requiring lightweight yet durable materials with added conductivity.
- Catalysis & Environmental: They act as catalyst supports in electrochemical and photocatalytic reactions, leveraging aluminum’s stability and CNT’s conductive scaffolds, while also being used in gas-discharge tubes, pollutant remediation, and environmental sensing.