Mwcnt Type 8 Carbon Nanotubes Multi-Walled, Length 20 µM, Od 10-20nm, 99.9% (Graphitized, -Cooh Functionalized) | 73235 | SRL Chem

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Mwcnt Type 8 Carbon Nanotubes Multi-Walled, Length 20 µM, Od 10-20nm, 99.9% (Graphitized, -Cooh Functionalized) | 73235 | SRL Chem

MWCNT Type 8 Carbon Nanotubes, Length 20 µm, OD 10-20nm, 99.9% purity, Graphitized, -COOH Functionalized.

Category Brand:

12,000.00

Description

Specifications Table

Product Name – MWCNT Type 8 Carbon Nanotubes Multi-Walled, Length 20 µm, OD 10-20nm, 99.9% (Graphitized, -COOH Functionalized)

Quantity/Pack Size – 1 Gms

Form – Powder

Grade – 99.9%

Application – Research, Education, Industrial

Product Overview

MWCNT Type 8 Carbon Nanotubes are advanced materials characterized by their multi-walled structure, with a length of 20 µm and an outer diameter ranging from 10-20nm. These nanotubes are graphitized and functionalized with -COOH groups, ensuring high purity at 99.9%. This product is ideal for various applications in research, education, and industrial settings. The graphitization process enhances the conductivity and mechanical strength, making them suitable for advanced material science experiments and innovative research projects. The -COOH functionalization improves dispersibility and compatibility with various matrices, facilitating easier integration into different systems. These nanotubes are essential for developing cutting-edge technologies and are highly valued for their superior properties and versatility.

FAQs

1. What are the primary applications of MWCNT Type 8 Carbon Nanotubes?

MWCNT Type 8 Carbon Nanotubes are primarily used in advanced material science research, educational experiments, and industrial applications requiring high conductivity and mechanical strength.

2. How does graphitization affect the properties of these nanotubes?

Graphitization enhances the conductivity and mechanical strength of the nanotubes, making them more suitable for applications requiring robust and efficient materials.

3. What is the significance of -COOH functionalization?

-COOH functionalization improves the dispersibility and compatibility of the nanotubes with various matrices, facilitating easier integration into different systems.

4. Are these nanotubes compatible with other materials?

Yes, the -COOH functionalization ensures compatibility with a wide range of materials, making them versatile for various applications.

5. How should these nanotubes be stored?

These nanotubes should be stored in a cool, dry place away from direct sunlight and heat sources to maintain their integrity and performance.

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