Multi Walled Carbon Nanotubes N-Methyl-2-Pyrrolidinone Dispersion, 4 wt%, Purity: > 95%, OD: 5-15 nm, Length: 10-30 µm
- SKU:
- NG02CN0105
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Description
15 ml/315 €
30 ml/520 €
60 ml/880 €
120 ml/1265 €
Multi Walled Carbon Nanotubes N-Methyl-2-Pyrrolidinone Dispersion
Concentration: 4 wt%, Purity: >95 %, OD: 5-15 nm, Length: 10-30 µm
Multi-Walled Carbon Nanotube (MWCNT) Dispersion is a high-purity suspension stabilized in N-Methyl-2-Pyrrolidinone (NMP). Engineered for high-end industrial performance, it utilizes thin-diameter (5-15 nm) nanotubes with high aspect ratios to ensure superior electrical and thermal connectivity. The NMP medium provides an ultra-stable environment that prevents re-agglomeration, allowing for easy integration into liquid-phase manufacturing. This dispersion is optimized for applications requiring maximum interface contact and enhanced mechanical reinforcement with minimal material loading.
Technical Properties
|
Purity |
>95 % |
|
|
MWCNT Content |
4 wt% |
|
|
Outer Diameter |
5-15 nm |
|
|
Length |
10-30 μm | |
|
Spesific Surface Area |
220-300 m2/g | |
|
Tap Density |
0.09 g/cm3 | |
|
CAS No |
MWCNT | NMP |
| 308068-56-6 | 872-50-4 |
SEM Image

Applications
- High-Performance Battery Electrodes: Specifically designed for Lithium-ion battery (LIB) cathode formulations to create a dense conductive network, significantly improving rate capability and electrode density.
- Precision Conductive Coatings: Ideal for developing ultra-thin, transparent, or anti-static (ESD) coatings where high clarity and surface conductivity are required.
- Advanced Polymer Composites: Used as a reinforcing agent in NMP-soluble engineering plastics to achieve dramatic improvements in tensile strength and thermal stability.
- Supercapacitor Technology: Enhances the power density of energy storage devices by providing an expansive surface area for ion adsorption and fast electron transport.
- Electromagnetic Interference (EMI) Shielding: Integration into specialized housings and films to protect sensitive aerospace and telecommunications electronics from signal interference.
- Conductive Inks and Pastes: A key component for high-resolution printed electronics and flexible sensors that demand consistent electrical performance across large surface areas.