Description
Specifications Table
| Product Name | SWCNT Type 3 Carbon Nanotubes Single-Walled COOH Functionalized |
|---|---|
| Pack Size | 25 mg |
| Form | Powder |
| Grade | Lab Grade |
| Application | Research, Nanotechnology, Composite Materials |
Product Description
SWCNT Type 3 carbon nanotubes are single-walled, COOH-functionalized structures designed for high-performance research applications. With an outer diameter of 1-2nm and a length range of 0.5-2.0 μm, these nanotubes offer exceptional purity (90%) and functionalization for enhanced solubility and compatibility in various experimental setups.
Whether you’re working on nanotechnology, composite materials, or advanced research projects, these lab-grade carbon nanotubes provide the precision and reliability needed for consistent results. The COOH functionalization ensures better dispersion in aqueous solutions, making them ideal for biological and chemical research.
At eqipped, we ensure that every batch of SWCNT Type 3 undergoes rigorous quality checks to meet the highest standards. This product is perfect for researchers and students who demand accuracy and performance in their experiments.
Upgrade your research with high-purity SWCNT Type 3 carbon nanotubes. Order now for fast delivery.
FAQs
What is the purity level of SWCNT Type 3 carbon nanotubes?
These nanotubes have a purity of 90%, ensuring high-quality results in research applications.
How does COOH functionalization benefit research?
COOH functionalization improves solubility and dispersion in aqueous solutions, making them easier to integrate into biological and chemical experiments.
What is the typical outer diameter of these nanotubes?
The outer diameter (OD) ranges from 1-2nm, providing a consistent structure for precise research needs.
Can these nanotubes be used in composite materials?
Yes, their high purity and functionalization make them ideal for reinforcing composite materials in advanced applications.
How should I store SWCNT Type 3 carbon nanotubes?
Store in a cool, dry place away from direct sunlight to maintain stability and performance.