• Home
  • /
  • Shop
  • /
  • Graphene-coated Aluminium foil

Graphene-coated Aluminium foil

  • Graphene-coated Aluminium foil
  • Electrical Resistivity: 4.5×10-6 Ω.cm
  • Thickness of foil: 16μm, per roll: 0.5m width x 2000m length
  • Application: used as lithium ion battery positive electrode’s electron-collector, 
    resistance is significantly lower than the traditional material

 

SKU: RN-MT-GRAPHENE-ALF Categories: , Tag:

Product Overview

Our Graphene-Coated Aluminium Foil is a breakthrough in materials engineering, bringing together the flexibility and lightness of aluminium with the exceptional conductivity and strength of graphene. This synergistic combination results in a material that significantly enhances the performance and longevity of energy storage devices. Ideal for use in lithium-ion batteries and supercapacitors, this product is at the cutting edge of energy technology, offering superior efficiency and reliability for manufacturers and researchers alike.

Key factor

  • Enhanced Electrical Conductivity: The graphene coating greatly improves the foil's ability to conduct electricity, optimizing it for use as a current collector in batteries and capacitors.
  • Improved Thermal Stability: Graphene's superior thermal properties enhance the foil's heat dissipation capabilities, contributing to safer and more stable energy storage solutions.
  • Increased Corrosion Resistance: The protective layer of graphene shields the aluminium foil from oxidation and corrosion, extending the material's lifespan under various environmental conditions.
  • Lightweight and Flexible: Maintains the inherent lightweight and flexible characteristics of aluminium foil, ensuring easy integration into battery and capacitor designs.

Applications

  • Higher Energy Efficiency: Offers increased energy density and efficiency in energy storage devices, enabling the development of more powerful and compact batteries.
  • Longer Lifecycle: Enhances the durability and longevity of energy storage solutions, reducing the need for frequent replacements and lowering long-term costs.
  • Versatile Application Range: Suitable for a broad spectrum of energy storage applications, from consumer electronics and electric vehicles to large-scale industrial power systems.
  • Eco-friendly: The improved efficiency and durability contribute to more sustainable energy storage solutions, aligning with green technology initiatives.

Advantages

  • Lithium-ion Batteries: Ideal for use as a current collector in anodes and cathodes, improving charge rates, capacity, and cycle life.
  • Supercapacitors: Enhances the performance and reliability of supercapacitors, offering rapid charging and discharging capabilities.
  • Portable Electronics: Supports the development of lighter, more efficient batteries for smartphones, laptops, and other portable devices.
  • Electric Vehicles (EVs) and Energy Storage Systems (ESS): Contributes to the advancement of EV battery technology and large-scale renewable energy storage, promoting the transition to cleaner energy sources.

Why HIYKA

The Graphene-Coated Aluminium Foil represents a significant advancement in material science, setting new standards for performance and sustainability in energy storage technology. By leveraging the unique properties of graphene, this product not only improves the efficiency and durability of batteries and capacitors but also paves the way for the next generation of energy solutions. Embrace the future of energy storage with our Graphene-Coated Aluminium Foil, where innovation meets practicality and performance.

77 / 100

    Disclaimer

    The product image(s) shown is a reference for the actual product. While every effort has been made to maintain complete accuracy and up to date product information, it is important to go through details such as product labels, manufacturing details, batch, warnings, and directions before using a packaged product.

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

    For bulk orders contact us on [email protected]

    Optimized by Optimole
    >