Large Inner Diameter Thin-Walled Multi-Walled Carbon Nanotubes
Large Inner Diameter Thin-Walled Multi-Walled Carbon Nanotubes
Large Inner Diameter Thin-Walled Multi-Walled Carbon Nanotubes
Large Inner Diameter Thin-Walled Multi-Walled Carbon Nanotubes

Large Inner Diameter Thin-Walled Multi-Walled Carbon Nanotubes

  • element:Carbon (C)
  • purity:High Purity
  • shape:Black Powder
  • specification:Outer Diameter 30-60nm, Inner Diameter 20-50nm, Length 1-10μm
  • packaging:Customizable

Large inner diameter thin-walled multi-walled carbon nanotubes (MWCNTs) offer optimized structural integrity, enhanced electrical conductivity, and superior thermal stability. Designed for advanced applications, they ensure efficient material dispersion, extended durability, and high-performance adaptability.

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Product Overview
Large inner diameter thin-walled multi-walled carbon nanotubes have a unique structure with a large inner diameter and thin walls. They combine high strength and excellent conductivity while exhibiting outstanding surface area and low filling density. Their unique nanotube shape and superior physical and chemical properties make them an ideal material for a wide range of high-tech applications.

Key Features

  • Large Inner Diameter and Thin-Walled Structure:Provides a larger space and surface area, enhancing the material's performance in applications.
  • Excellent Conductivity:High electrical conductivity makes them suitable for various electronic and electrical applications.
  • Lightweight and High Strength:Low filling density combined with high strength, ideal for lightweight composite materials.
  • Versatile Functionality:Suitable for thermal conductivity, electrical conductivity, adsorption, and catalysis.

Applications

  • Composite Materials:Used in the production of high-performance lightweight composites, improving strength and rigidity.
  • Electronic Devices:Demonstrates exceptional performance in conductive inks, flexible displays, and sensor manufacturing.
  • Energy Storage and Electrodes:Applied as electrode materials in lithium-ion batteries and supercapacitors, enhancing energy storage capabilities.
  • Catalysis and Adsorption:Acts as a catalyst or catalyst support in chemical reactions and adsorption applications.
  • Thermal Management and Heat Dissipation:Used as a thermal management material in devices requiring high thermal conductivity.
  • Scientific Research:Provides innovative support for research in nanotechnology and material science.

 

Technical ParameterValue
Diameter30-60 nm
Inner Diameter20-50 nm
Length1-10 µm
Purity>70%
SSA>100 m²/g
Tap Density0.0441 g/cm³
True Density~2.1 g/cm³
Electrical Conductivity (EC)>100 s/cm

 

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