Purified Multi-walled carbon nanotubes

>90%,ID:70-80nm,OD:90-100nm,Length:10um

Reagent Code: #94587
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CAS Number 308068-56-6

blur_circular Chemical Specifications

badge Registry Numbers
MDL Number MFCD00133992
thermostat Physical Properties
Melting Point 3550 °C(lit.)
Boiling Point 500-600 °C(lit.)
inventory_2 Storage & Handling
Density ~1.7 g/mL at 25 °C(lit.)
Storage room temperature

description Product Description

Purified multi-walled carbon nanotubes are widely used in the field of electronics due to their excellent electrical conductivity and mechanical strength. They are incorporated into conductive films, sensors, and transistors to enhance performance and durability. In energy storage, these nanotubes are utilized in batteries and supercapacitors to improve charge capacity and efficiency. Their high surface area and thermal conductivity make them ideal for use in composite materials, where they reinforce polymers, metals, and ceramics for applications in aerospace, automotive, and construction industries. Additionally, they play a significant role in environmental applications, such as water filtration and air purification, by effectively adsorbing contaminants. In biomedical fields, they are explored for drug delivery systems, tissue engineering, and biosensors due to their unique structural and functional properties.

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Test Parameter Specification
Appearance Black solid
Purity 89.5-100
Infrared Spectrum Conforms to Structure
NMR Conforms to Structure

shopping_cart Available Sizes & Pricing

Size Availability Unit Price Quantity
inventory 1g
10-20 days £22.76
inventory 5g
10-20 days £70.33
inventory 25g
10-20 days £279.50
inventory 100g
10-20 days £827.46
Purified Multi-walled carbon nanotubes
Purified multi-walled carbon nanotubes are widely used in the field of electronics due to their excellent electrical conductivity and mechanical strength. They are incorporated into conductive films, sensors, and transistors to enhance performance and durability. In energy storage, these nanotubes are utilized in batteries and supercapacitors to improve charge capacity and efficiency. Their high surface area and thermal conductivity make them ideal for use in composite materials, where they reinforce polymers, metals, and ceramics for applications in aerospace, automotive, and construction industries. Additionally, they play a significant role in environmental applications, such as water filtration and air purification, by effectively adsorbing contaminants. In biomedical fields, they are explored for drug delivery systems, tissue engineering, and biosensors due to their unique structural and functional properties.
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