
Product Name
Name:High purity Carboxyl SWCNTs aqueous dispersion
Product Overview
Carbon nanotubes, also known as buckytubes, can be viewed as seamless hollow circular tubes formed by winding a single layer of graphite hexagonal grid plane along chiral vectors, with carbon atoms typically capped at both ends in pentagons. Therefore, the carbon atoms in carbon nanotubes are mainly sp2 hybridized, and once the hexagonal network structure forms a spatial topology, a certain sp3 hybridization can be formed. The diameter of SWCNT is generally between 1-2 nm. Single walled carbon nanotubes can reach lengths of micrometers, even millimeters and centimeters, with a large aspect ratio and superior electrical, mechanical, and thermal properties.
Technical Parameter
The raw material used in the carboxylated high-purity single-walled carbon nanotube dispersion liquid is XFS04 carboxylated high-purity carbon nanotubes, and the carbon tube content is about 0.2wt%. The high concentration can be customized.
Composition: Carboxylated high-purity carbon nanotubes, deionized water, non-ionic surfactant.
Product Features
Single walled carbon nanotubes have the following characteristics:
Unique structure: It can be seen as a curled layer of graphene sheets with a hollow tubular structure.
Small diameter: The diameter is usually between 1-2nm.
Excellent electrical performance: It has high conductivity and can exhibit metallic or semiconductor behavior.
Excellent mechanical performance: high strength and toughness.
Large specific surface area: conducive to adsorption and heat transfer.
Application Fields
In the field of electronics: Due to their unique electrical properties, single-walled carbon nanotubes can be used to manufacture smaller and more efficient integrated circuits, field-effect transistors, and flexible electronic devices.
In the field of energy, single-walled carbon nanotubes can be used as electrode materials in lithium-ion batteries, which can increase the battery's charge and discharge performance and cycle life; It can also be used to manufacture supercapacitors, improving the energy density and power density of capacitors.
Composite materials: Adding single-walled carbon nanotubes to polymers and other materials can significantly improve their strength, stiffness, and toughness.
Sensors: Utilizing their high sensitivity and selectivity towards gases and chemicals, they can be used to detect biomolecules and cells, among others.
Nanomachinery: Single walled carbon nanotubes can serve as key components for constructing micro machines, such as nanomotors.
Aerospace: Used for manufacturing lighter and stronger aircraft and spacecraft components.
Other fields: It also has applications in catalysts, field emitters, conductive films, and biological nanomaterials.
Related Information
Please e-mail for the detailed characterization data.
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