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MWCNTs Ethanol Dispersion (3wt%, >95%, OD: 50-80 nm, Length 10-20um )

 

MWCNTs Ethanol Dispersion
Product No NRE-36013
CAS No. NA
Purity > 95 wt%
Average Diameter 50-80 nm
Average Length 10-20um (TEM)
Special Surface Area(SSA) > 40 m2/g (BET)
Tap Density  0.18/cm3
True Density 2.1 g/cm3
Electric Conductivity > 100 S/cm

MWCNTs Ethanol Dispersion

MWCNTs ethanol dispersion are nanostructures composed of multiple layers of carbon atoms, forming cylindrical shapes with exceptional mechanical, electrical, and thermal properties. Their unique characteristics make them highly desirable for applications across diverse fields, including materials science, electronics, and energy storage.

Applications

The dispersion of multi-walled carbon nanotubes (MWCNTs) in ethanol facilitates a wide range of innovative applications. Here are some of the key areas where this dispersion is utilized:

Composite Materials

Description: MWCNTs dispersed in ethanol can be mixed with polymers to create composite materials that are stronger, lighter, and more durable.

Applications: Aerospace components, automotive parts, and construction materials.

Electronics

Description: Ethanol-dispersed MWCNTs are used to create conductive inks for printed electronics, flexible circuits, and touch screens.

Applications: Wearable technology, sensors, and transparent conductive films.

 Energy Storage

Description: MWCNTs enhance the conductivity and charge capacity of electrodes in batteries and supercapacitors when dispersed in ethanol.

Applications: Lithium-ion batteries, supercapacitors for electric vehicles, and portable electronic devices.

 Biomedical Applications

Description: MWCNTs can be used for drug delivery systems, imaging, and biosensors, with ethanol dispersion aiding in their functionalization and distribution.

Applications: Targeted cancer therapy, diagnostic imaging agents, and biosensors for disease detection.

Environmental Remediation

Description: Ethanol-dispersed MWCNTs can be used in filtration systems to adsorb and remove pollutants from water.

Applications: Water purification, heavy metal removal, and environmental cleanup efforts.

Thermal Management

Description: Incorporating MWCNTs into thermal interface materials improves heat dissipation in electronic devices.

Applications: Heat sinks, thermal pads, and cooling systems in computers and other electronics.

Filtration and Membrane Technologies

Description: Ethanol-dispersed MWCNTs can be used to create membranes with enhanced permeability and selectivity for gas or liquid separation.

Applications: Gas separation membranes, water filtration systems, and industrial filtration processes.

Coatings and Paints

Description: MWCNTs in ethanol can be incorporated into paints and coatings to improve their electrical conductivity and mechanical properties.

Applications: Anti-corrosion coatings, conductive paints, and protective coatings for electronic devices.

 

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