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Graphitized Hydroxy Multi Walled Carbon Nanotube

  • Purity: >99.9wt%;
  • -OH content: 1.85wt%;
  • Inner diameter: 3-5nm;
  • Outer Diameter: 8-15nm;
  • Length: 50um;
  • Specific Surface Area: >117 m2/g;
  • ASH:<0.1wt%;
  • True Density: 2.1g/cm3;
  • EC: 100S/cm;
  • Heat treatment temperature: 2800 degree Celsius;
  • Black powder.
  • Available in :10gm

Product Overview

Hiyka's Graphitized Hydroxy Multi-Walled Carbon Nanotubes are a pinnacle of nanotechnology innovation, designed to meet the rigorous demands of modern engineering and scientific research. These MWCNTs undergo a specialized graphitization process, significantly enhancing their electrical and thermal conductivity. Additionally, the introduction of hydroxy (-OH) functional groups on their surfaces greatly improves their solubility and chemical reactivity. Ideal for a wide range of applications, including advanced composites, energy solutions, electronics, and environmental technologies, our graphitized hydroxy MWCNTs set new standards in performance and versatility.

Key factor

  • Enhanced Electrical Conductivity: The graphitization process increases the conductivity, making these MWCNTs ideal for electronic applications.

  • Superior Thermal Conductivity: These MWCNTs efficiently conduct heat, suitable for thermal management in advanced electronics.

  • Improved Dispersion: Hydroxy functionalization enhances solubility in various solvents, facilitating easy integration into polymer matrices.

  • Increased Chemical Reactivity: The presence of –OH groups allows for further functionalization, broadening the scope of applications.

  • Robust Mechanical Properties: Despite functionalization, these MWCNTs retain high tensile strength and durability.

Applications

  • Advanced Composites: Reinforces materials for the automotive, aerospace, and electronics industries, enhancing strength, conductivity, and thermal stability.

  • Energy Storage: Improves the performance of batteries and supercapacitors, contributing to higher energy densities and faster charge/discharge rates.

  • Electronics: Essential for developing conductive inks, flexible displays, and other electronic components requiring high conductivity.

  • Environmental Remediation: Utilized in filtering and adsorption technologies for water and air purification, leveraging chemical reactivity.

  • Catalysis: Acts as a catalyst support in chemical reactions, enhancing efficiency and selectivity.

Advantages

  • High-Performance: Delivers exceptional conductivity, mechanical strength, and thermal stability, driving forward technological advancements.
  • Chemically Versatile: Enables easy integration and customization for specific research or industrial needs.
  • Eco-Friendly: Supports sustainable development goals by enhancing the efficiency and performance of green technologies.
  • Quality Assurance: Manufactured under strict quality control to ensure purity, consistency, and superior performance.
  • Scalable Production: Ready for bulk production to meet industrial demands without compromising quality or performance.

References 

  • Chemical oxidation of multiwalled carbon nanotubes

    V Datsyuk, M Kalyva, K Papagelis, J Parthenios… - carbon, 2008 - Elsevier
  • Electrogeneration of H2O2 using graphite cathode modified with electrochemically synthesized polypyrrole/MWCNT nanocomposite for electro-Fenton process

    R Babaei-Sati, JB Parsa - Journal of industrial and engineering chemistry, 2017 - Elsevier
  • Comparesion of functionalization of multi-walled carbon nanotubes treated by oil olive and nitric acid and their characterization

    DS Ahmed, AJ Haider, MR Mohammad - Energy Procedia, 2013 - Elsevier
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    Disclaimer

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    For additional information, please refer to the contact details mentioned on the label. 

    For bulk orders contact us on [email protected]

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