Few Layers Graphene Oxide

Few Layer Graphene Oxide (FLGO) – Premium Quality for Advanced Applications

Few Layer Graphene Oxide (FLGO) is a high-performance, ultra-thin material derived from graphene that is produced using a specialized protocol, ensuring excellent quality and reproducibility. The FLGO we provide is characterized by a few layers of graphene, making it an ideal material for advanced applications across numerous industries such as energy storage, electronics, composites, and environmental technologies. With its large surface area, high conductivity, and versatile dispersibility, FLGO is poised to drive innovations in material science and nanotechnology.

Our Few Layer Graphene Oxide is manufactured under strict quality controls and is available in customizable properties to meet the diverse needs of industrial and research applications. This material has quickly become essential for researchers and industries looking to incorporate cutting-edge materials for next-generation products.

Key Features of Few Layer Graphene Oxide (FLGO)

  • Specific Surface Area: ~250–350 m²/g This high surface area ensures excellent reactivity and stability, making FLGO ideal for energy storage applications, composite strengthening, and more.
  • Thickness: 1-5 nm – A few layers of graphene provide a fine balance between strength, conductivity, and flexibility for use in various advanced technologies.
  • Carbon Content: 76–79% – High carbon content ensures that FLGO retains excellent conductivity and performance for demanding applications.
  • Oxygen Content: 20-23% – The oxygenated groups on the surface offer functionalization possibilities, allowing customization for different uses.
  • Dispersibility: Easily dispersible in solvents such as DMF, DMSO, NMP, Acetone, and Ethanol, ensuring versatility in application.
  • Form: Powder – The powder form makes it highly customizable in terms of particle size and surface area to suit specific needs and applications.
  • Solubility: Insoluble in water – This ensures FLGO remains stable for a variety of processes and applications where aqueous stability is not required.

Our Few Layer Graphene Oxide is rigorously tested and validated using Raman Spectroscopy, UV-Vis Spectroscopy, Elemental Analysis, and TEM Morphology to ensure purity, consistency, and performance.

Applications of Few Layer Graphene Oxide

  1. Energy Storage Devices
    The exceptional surface area and conductivity of FLGO make it an ideal material for supercapacitors, batteries, and fuel cells. By incorporating FLGO into energy storage devices, these systems benefit from improved charge/discharge cycles, higher energy densities, and greater efficiency, making FLGO an essential material for advanced energy storage solutions.
  2. Composite Materials
    FLGO is widely used to reinforce composite materials due to its high mechanical strength and excellent thermal conductivity. It enhances the properties of materials used in the automotive, aerospace, and construction industries. Its use in composites results in products that are not only lightweight but also more durable and resistant to wear and tear, making it ideal for manufacturing parts that require high performance and durability.
  3. Electronics and Sensors
    The electrical conductivity of Few Layer Graphene Oxide makes it a valuable material for the development of flexible electronics, conductive films, and sensors. It can be integrated into printed electronics, wearable devices, and smart textiles, enabling the creation of next-generation, flexible, and lightweight electronic components that perform at high efficiencies. Additionally, FLGO is used in the development of gas sensors, biosensors, and chemical sensors due to its enhanced conductivity and surface reactivity.
  4. Environmental Applications
    FLGO plays a significant role in environmental technologies, particularly in water purification and pollution control. Its high surface area and functional groups allow it to adsorb contaminants effectively, making it ideal for use in filtration systems. FLGO is used to remove heavy metals, dyes, and other pollutants from water, contributing to more sustainable and efficient environmental cleanup solutions.
  5. Research and Development
    As a high-performance material, Few Layer Graphene Oxide is widely used in academic research. Its tunable properties make it a versatile material for researchers working on new nanomaterials, drug delivery systems, biosensors, and energy solutions. It serves as a building block for the exploration of innovative applications in material science, nanotechnology, and energy storage.

Why Choose Few Layer Graphene Oxide from RI Nanotech?

  1. High-Quality and Consistent Supply
    At RI Nanotech, we prioritize delivering high-quality Few Layer Graphene Oxide. Every batch undergoes stringent testing to ensure that it meets industry standards for purity, consistency, and performance. Our commitment to quality is backed by our use of advanced analytical techniques such as Raman Spectroscopy and TEM Morphology.

  2. Customization to Fit Your Needs
    We offer customized specifications for FLGO, including particle size, surface area, and layer structure, so you can tailor the material to your specific application requirements. Whether you need FLGO for energy storage, composites, or electronics, we provide a solution that matches your needs.

  3. Eco-Friendly Production
    Our production process for Few Layer Graphene Oxide is designed with sustainability in mind. We utilize environmentally friendly methods to synthesize and produce FLGO, contributing to green technologies and eco-friendly innovations.

  4. Expert Support and Services
    With years of experience in nanotechnology, our team is equipped to provide outstanding technical support and guidance to ensure that you get the most out of your Few Layer Graphene Oxide. Whether you’re an academic institution or a commercial enterprise, we’re here to help you implement FLGO into your applications effectively.

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    RI Group

    Innovating the Future with Advanced Nanomaterials

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