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Short Length MWCNT-Multi Walled Carbon Nanotubes

Short Length MWCNT-Multi Walled Carbon Nanotubes

650 INR/Bottle

Product Details:

  • Purity >99% Carbon
  • Solubility Insoluble in water, soluble in some organic solvents
  • Ph Level Neutral
  • Molecular Formula C
  • Storage Cool, dry place; tightly sealed container
  • Density 2.1 Gram per cubic centimeter(g/cm3)
  • Poisonous Yes
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Short Length MWCNT-Multi Walled Carbon Nanotubes Price And Quantity

  • 1 Gram
  • 650 INR/Bottle
  • >200
  • <1%
  • Minimal; below regulatory limits
  • Excellent; metallic behavior
  • 250400 m/g
  • 3-10 nm
  • 10-40 nm
  • Stable for over 3 years
  • High; up to 3000 W/mK
  • Black
  • <1.2
  • >250 m/g
  • 0.5 2 m (short length)
  • Chemical Vapor Deposition (CVD)

Short Length MWCNT-Multi Walled Carbon Nanotubes Product Specifications

  • Yes
  • 280300
  • Powder
  • >99% Carbon
  • Insoluble in water, soluble in some organic solvents
  • Neutral
  • 308068-56-6
  • C
  • 2.1 Gram per cubic centimeter(g/cm3)
  • Cool, dry place; tightly sealed container
  • Industrial, Research, Nanotechnology, Electronics
  • Graphitic layers in cylindrical shape
  • ASTM/ISO/GB standards for nanomaterials
  • Reinforcement in composites, conductive inks, EMI shielding, batteries, sensors, catalyst support
  • Short Length MWCNT
  • Research Grade
  • Multi Walled Carbon Nanotubes
  • Odorless
  • Multi Walled Carbon Nanotubes
  • Odorless (no characteristic taste)
  • Nanomaterial
  • MWCNT
  • Varies with tube size
  • Not applicable; decomposes at very high temperatures above 600C
  • 231-955-3
  • Tubular (multi-walled)
  • >200
  • <1%
  • Minimal; below regulatory limits
  • Excellent; metallic behavior
  • 250400 m/g
  • 3-10 nm
  • 10-40 nm
  • Stable for over 3 years
  • High; up to 3000 W/mK
  • Black
  • <1.2
  • >250 m/g
  • 0.5 2 m (short length)
  • Chemical Vapor Deposition (CVD)

Product Description

Short Length MWCNT-Multi Walled Carbon NanotubesDescription

Short Length MWCNT-Multi Walled Carbon Nanotubes is generally immediately available in most volumes. Nanochemazone produces to many standard grades when applicable, including Mil Spec (military grade); ACS, Reagent and Technical Grade; Food, Agricultural and Pharmaceutical Grade; Optical Grade, USP and EP/BP (European Pharmacopoeia/British Pharmacopoeia) and follows applicable ASTM testing standards. Typical and custom packaging is available, as is additional technical and safety (MSDS) data. Please contact us for information on lead time and pricing above.



Reliable and Innovative Nanomaterial

Short Length MWCNTs deliver high performance in various fields, due to their excellent electrical and thermal conductivity, high aspect ratio, and purity. Their graphitic cylindrical structure ensures superior reinforcement and conductive properties, making them ideal for advanced composite materials and electronic components. Processed using Chemical Vapor Deposition (CVD) and adhering to global ASTM/ISO/GB standards, these nanotubes bring consistency and quality to your projects.


Versatile Applications Across Industries

Multi Walled Carbon Nanotubes are exceptionally adaptable for use in electronics, nanotechnology, and industrial research. Their compatibility with conductive inks, EMI shielding applications, batteries, sensor development, and catalyst support highlights their broad utility. The short length and high surface area make them a preferred additive for composite reinforcement, enabling enhanced mechanical and thermal characteristics in end products.


Safe Handling and Long Shelf Life

With purity above 99% and minimal heavy metal and ash content, Short Length MWCNTs provide a non-poisonous, odorless option for manufacturers and researchers. Designed for easy storage in cool, dry conditions, the material remains stable for over three years. The powder form supports convenient integration into different processes, and the regulated production method ensures user safety and quality control.

FAQ's of Short Length MWCNT-Multi Walled Carbon Nanotubes:


Q: How are Short Length MWCNTs produced and what sets their quality apart?

A: These Multi Walled Carbon Nanotubes are synthesized using the Chemical Vapor Deposition (CVD) technique. This method provides excellent control over purity (above 99% carbon) and uniformity, resulting in high conductivity, minimal defects (ID/IG <1.2), and low ash content, distinguishable from lower-grade alternatives.

Q: What benefits do Short Length MWCNTs offer in composite reinforcement?

A: MWCNTs enhance mechanical strength, electrical, and thermal conductivity in composite materials due to their high aspect ratio (>200), surface area (>250 m2/g), and excellent stability. These properties allow for more efficient load transfer and improved performance in structural and functional composites.

Q: Where can these MWCNTs be used and what are their primary applications?

A: Short Length MWCNTs find widespread use in industrial and research sectors, notably for EMI shielding, conductive inks, battery electrodes, sensor platforms, catalyst supports, and nanotechnology development. Their robust conductivity and compatibility make them ideal for high-performance materials and devices.

Q: What is the process for handling and storing MWCNT powder safely?

A: For safe handling, use personal protective equipment to avoid inhalation, as MWCNT powder may cause respiratory irritation. Store the material in a tightly sealed container in a cool, dry environment, away from direct sunlight and moisture, ensuring long-term stability for over three years.

Q: How does the excellent electrical and thermal conductivity of MWCNTs benefit technological applications?

A: With metallic behavior and thermal conductivities reaching up to 3000 W/mK, MWCNTs provide superior performance in electronic circuits, thermal interface materials, and battery electrodes, resulting in higher efficiency, heat dissipation, and overall longevity of the final products.

Q: Why is the aspect ratio and surface area of MWCNTs significant for researchers?

A: A high aspect ratio (>200) and substantial specific surface area (BET: 250-400 m2/g) enable better dispersion, interaction with matrices, and increased active sites in composites and catalysts. This enhances the effectiveness of research in nanotechnology and material science.

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