Multi-Walled Carbon Nanotubes Dispersion
Isopropanol solution, 2- 3wt %
Reagent
Code: #94595
CAS Number
308068-56-6
blur_circular Chemical Specifications
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Registry Numbers
MDL Number
MFCD00133992
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Physical Properties
Melting Point
3550 °C(lit.)
Boiling Point
500-600 °C(lit.)
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Storage & Handling
Density
~1.7 g/mL at 25 °C(lit.)
Storage
room temperature
description Product Description
Multi-walled carbon nanotubes dispersion is widely used in the field of materials science for enhancing the mechanical, electrical, and thermal properties of composites. It is incorporated into polymers to create lightweight yet strong materials for use in aerospace, automotive, and construction industries. The dispersion is also utilized in electronics for developing conductive films, sensors, and flexible displays due to its excellent conductivity. In energy storage, it plays a key role in improving the performance of batteries and supercapacitors by increasing electrode conductivity and surface area. Additionally, it is applied in coatings and paints to provide anti-static, anti-corrosion, and UV-resistant properties. In biomedical applications, it is explored for drug delivery systems and tissue engineering scaffolds due to its unique structure and biocompatibility.
format_list_bulleted Product Specification
Test Parameter | Specification |
---|---|
Purity (MWNTS) | 95 |
ID | 5-15 nm |
OD | 50 |
Length | 10-20um |
Appearance | Liquid |
SSA | 40 m2/g |
Ash | 1.5 wt |
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Multi-Walled Carbon Nanotubes Dispersion
Multi-walled carbon nanotubes dispersion is widely used in the field of materials science for enhancing the mechanical, electrical, and thermal properties of composites. It is incorporated into polymers to create lightweight yet strong materials for use in aerospace, automotive, and construction industries. The dispersion is also utilized in electronics for developing conductive films, sensors, and flexible displays due to its excellent conductivity. In energy storage, it plays a key role in improving the performance of batteries and supercapacitors by increasing electrode conductivity and surface area. Additionally, it is applied in coatings and paints to provide anti-static, anti-corrosion, and UV-resistant properties. In biomedical applications, it is explored for drug delivery systems and tissue engineering scaffolds due to its unique structure and biocompatibility.
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