Carbon Nanotube Buckypaper with Metal, Diameter: 120-130 mm, Thickness: 10-20 µm, Metal Content: 0.5% max
- SKU:
- NG01SC0301
- Shipping:
- Calculated at Checkout
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Description
1 set/151 €
5 sets/682 €
Please contact us for quotes on larger quantities !!!
Carbon Nanotube Buckypaper with Metal 0.5% max
Thickness: 10-20 µm, MWCNT Purity: 99.5 wt%, Metal Content: 0.5% max
1 sheet: Diameter: Φ12–13 cm
Carbon Nanotube Buckypaper which is made up of the carbon nanotubes, is 10 times lighter but potentially 500 times stronger than steel. Due to its unique properties, carbon nanotube buckypaper is envisioned as a marvelously new material for light, energy-efficient aircraft and automobiles, more powerful computers, improved TV screens and many other products. For applications requiring the highest quality, we offer Carbon Nanotube Buckypaper with lowest prices.
Technical Properties
| MWCNT Purity | 99.5 wt% |
| Thickness | 10-20 µm |
| Metal Content | 0.5% max |
| Electrical Conductivity | 2×10³ - 4×10³ S/m |
| Strength | 10.0 - 15.0 MPa |
| Bending Property | little fragile |
Applications
- Energy Storage: Used as electrodes in supercapacitors, lithium batteries, and fuel cells, where high conductivity and surface area improve charge transport and cycle stability.
- Electronics: Applied in flat‑panel displays, transistors, and advanced computing devices, leveraging its conductive and thermal properties for miniaturized, high‑performance systems.
- Electromagnetic Interference (EMI) Shielding: Buckypaper’s conductivity and lightweight nature make it effective for shielding sensitive electronics from electromagnetic radiation.
- Thermal Management: Functions as a heat spreader and conductor, dispersing heat in aerospace, automotive, and electronic systems.
- Structural Materials: Integrated into ultra‑high strength composites for aircraft, automobiles, and defense applications, reducing weight while maintaining durability.
- Biomedical Devices: Investigated for medical implants, biosensors, and drug delivery systems, thanks to its biocompatibility and functionalizable surface.
- Catalysis & Chemical Applications: Serves as a catalyst support in chemical reactions and energy conversion processes due to its large surface area and conductivity.