Industrial-Grade Single-Walled Carbon Nanotubes (SWCNTs) – WOBO Scientific Research New Materials One-Stop Service Platform https://www.hi-tech-materials.com Thu, 08 May 2025 01:31:02 +0000 en-US hourly 1 https://wordpress.org/?v=6.9 https://www.hi-tech-materials.com/wp-content/uploads/2025/05/cropped-微信图片_20240923152541-32x32.png Industrial-Grade Single-Walled Carbon Nanotubes (SWCNTs) – WOBO Scientific Research New Materials One-Stop Service Platform https://www.hi-tech-materials.com 32 32 High-Quality Nano Single-Walled Carbon Nanotubes (SWCNT) https://www.hi-tech-materials.com/product/high-quality-nano-single-walled-carbon-nanotubes-swcnt https://www.hi-tech-materials.com/product/high-quality-nano-single-walled-carbon-nanotubes-swcnt#respond Thu, 08 May 2025 01:29:35 +0000 https://www.hi-tech-materials.com/?post_type=product&p=5043
High-quality nano single-walled carbon nanotubes (SWCNT) provide optimized electrical conductivity, superior mechanical strength, and enhanced thermal stability. Designed for advanced applications, they ensure efficient material integration, extended durability, and high-performance adaptability.
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Product Overview
Single-walled carbon nanotubes (SWCNT) are seamless hollow cylinders formed by a single layer of graphite hexagonal lattice wrapped along a chiral vector. They exhibit outstanding mechanical, electrical, and thermal properties. With diameters typically ranging from 1-2 nm and lengths extending to microns or longer, their high aspect ratio makes them highly versatile across a range of applications.

Product Features

  • Exceptional Mechanical Properties: With an extremely high strength and toughness, their theoretical strength can exceed steel by tens to hundreds of times.
  • Outstanding Electrical Properties: Excellent electrical conductivity, depending on the aspect ratio, structure, and preparation methods.
  • Good Thermal Properties: High thermal conductivity, efficiently transferring heat.
  • Large Surface Area: Suitable for applications in adsorption, catalysis, and more.

Applications

  • Polymer Additives: Enhance the performance of polymers.
  • Catalysts: Used in various catalytic reactions.
  • Electronic Devices: Applied in cathode ray tube components, electron field emitters, and gas discharge tubes in telecom networks.
  • Energy Conversion and Storage: Used in lithium-ion battery anodes, hydrogen storage, and energy conversion devices.
  • Composites: Reinforce composite materials, enhancing performance through filling or coating.
  • Sensors and Supercapacitors: Serve as core materials in sensors and supercapacitors.

 

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95% Purity Nano Single-Walled Carbon Nanotubes (SWCNT) https://www.hi-tech-materials.com/product/95-purity-nano-single-walled-carbon-nanotubes-swcnt https://www.hi-tech-materials.com/product/95-purity-nano-single-walled-carbon-nanotubes-swcnt#respond Thu, 08 May 2025 01:22:13 +0000 https://www.hi-tech-materials.com/?post_type=product&p=5041
95% purity nano single-walled carbon nanotubes (SWCNT) offer exceptional electrical conductivity, superior mechanical strength, and optimized structural uniformity. Designed for advanced applications, they ensure efficient material integration, extended durability, and high-performance adaptability.
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Product Overview
Single-walled carbon nanotubes (SWCNT) are seamless hollow cylinders composed of a single layer of graphite hexagonal lattice rolled along a chiral vector. They possess unique electrical, mechanical, thermal, and chemical properties. Typically with diameters ranging from 1-2 nm and lengths extending to microns or longer, SWCNTs exhibit extraordinary mechanical strength, electrical conductivity, and thermal conductivity, with a high aspect ratio and nanoscale effects, making them a central focus in material science and nanotechnology research.

Product Features

  • Excellent Electrical Conductivity: High electrical conductivity, capable of efficiently transmitting current, comparable to excellent conductors like silver and copper.
  • High Thermal Conductivity: Exceptional heat conduction properties, making them ideal for efficient heat dissipation applications.
  • Unique Mechanical Properties: Extremely high strength and toughness, with tensile strength ranging from 100 – 200 GPa and Young’s modulus up to 1 TPa.
  • Nano-Size Effect: The small size brings unique properties such as quantum effects and surface effects, providing exceptional characteristics in electronic transport.
  • High Chemical Stability: Highly stable in most chemical environments, resistant to reactions with acids, bases, or oxidants.
  • Diverse Morphologies: Can form bundles, films, networks, and other shapes to suit various application needs.
  • Optical Properties: Can absorb and scatter light of specific wavelengths and exhibit luminescence under certain conditions, suitable for optoelectronic devices.
  • High Flexibility: Can bend and fold without breaking, ideal for flexible electronic devices.

Applications

  • Electronics: Used in the production of high-efficiency integrated circuits, field-effect transistors, flexible electronic devices, and more.
  • Energy: Used as electrode materials in lithium-ion batteries to improve charging and discharging performance and cycle life, as well as in high-density and high-power supercapacitors.
  • Composites: Added as an additive in polymers to significantly enhance the material’s strength, stiffness, and toughness.
  • Sensors: Used in high-sensitivity detection of gases, chemicals, biological molecules, and cells.
  • Nano-Mechanics: Acts as a core material for miniature mechanical components, such as nanomotors.
  • Aerospace: Used in the manufacture of lightweight, high-strength components for aircraft and spacecraft.
  • Other Areas: Also used in catalysts, field emitters, conductive films, and biocompatible nanomaterials.
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