Single-Walled / Double-Walled Carbon Nanotube Vertical Array
Single-Walled / Double-Walled Carbon Nanotube Vertical Array
Single-Walled / Double-Walled Carbon Nanotube Vertical Array
Single-Walled / Double-Walled Carbon Nanotube Vertical Array

Single-Walled / Double-Walled Carbon Nanotube Vertical Array

  • element:Carbon (C)
  • purity:High Purity
  • shape:Black Blocks
  • specification:Height 10-400µm, Tube Diameter 1-4nm, Wall Layers 1-2
  • packaging:Customizable

Single-walled / double-walled carbon nanotube vertical arrays provide superior alignment, optimized conductivity, and enhanced mechanical stability. Designed for advanced applications, they enable efficient electron transport, extended durability, and high-performance adaptability.

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Product Overview
The single-walled / double-walled carbon nanotube vertical array consists of single-walled or double-walled carbon nanotubes arranged vertically. This structure offers an extremely high surface area and excellent conductivity. The vertical alignment of these nanotubes provides outstanding performance across various fields, especially in electronics, energy storage, catalysis, and sensor applications.

Key Features

  • Adjustable Height:Height ranges from 10 to 400 microns, catering to different application needs.
  • High Purity:Carbon nanotubes have a purity of up to 98%, ensuring excellent conductivity and mechanical performance.
  • Single-Walled and Double-Walled Structures:Single-walled nanotubes offer a higher surface area, while double-walled nanotubes combine superior mechanical strength and conductivity.
  • Small Tube Diameter:The carbon nanotube diameter ranges from 1 to 4 nanometers, improving surface reactivity and making it suitable for various high-performance applications.

Applications

  • Electronic Devices:Used for manufacturing high-performance sensors, field-effect transistors, conductive materials, and other electronic components.
  • Energy Storage:Serves as an efficient electrode material for lithium batteries, supercapacitors, and other energy storage devices.
  • Catalysis:Acts as a catalyst support or catalyst itself, enhancing catalytic efficiency in chemical reactions and energy conversion processes.
  • Composite Materials:Enhances the mechanical properties and conductivity of base materials such as plastics, rubber, and metals.
  • Sensor Technology:Applied in gas sensors and biosensors, providing high sensitivity and fast response.
  • Thermal Management Materials:Used in high-performance electronic devices to enhance thermal conductivity and heat dissipation.

 

PropertyParameters
AppearanceBlack block
Height10 – 400 µm
Wall Number1~2
Carbon Tube Diameter1 – 4 nm
Purity98%
Density≤0.3 g/cm³
Specific Surface Area~20 m²/g
Electrical Conductivity103 S/m

 

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