Ridgehart Graphene Nanoplates (3–10 nm Thickness) – High-Purity, High-Conductivity Carbon Nanomaterials

Ridgehart
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Ridgehart Graphene Nanoplates are ultra-thin, high-purity graphene sheets engineered for advanced composite reinforcement, conductive materials, and high-performance industrial formulations. With a thickness of 3–10 nm, lateral diameters of 5–10 μm, high purity at 99.5%, and excellent conductivity up to 1000 S/cm, these graphene nanoplates deliver exceptional strength, flexibility, and multifunctional performance across a wide range of engineering applications.

Technical Specifications:

Structural & Physical Properties:

  • Thickness: 3–10 nm
  • Lateral Diameter: 5–10 μm
  • Purity: 99.5%
  • Electrical Conductivity: 500–1000 S/cm
  • Surface Area: 31.657 m²/g
  • Tap Density: 0.075 g/cm³
  • Apparent Density: 0.050 g/cm³

Characterization Methods:

  • SEM imaging (surface morphology)
  • TEM imaging (layer structure)

Material Characteristics:

  • High Electrical Conductivity (500–1000 S/cm): Ideal for conductive coatings, battery additives, antistatic materials, and polymer composites where efficient charge transport is required.
  • Ultra-Thin Graphene Sheets (3–10 nm): The nanometre-level thickness provides high flexibility, rapid electron mobility, and excellent reinforcement characteristics.
  • Large Lateral Dimensions (5–10 μm): Ensures strong mechanical bridging effects, improving tensile strength and stiffness in composite formulations. 
  • High Surface Area (31.657 m²/g): Offers excellent interaction with polymers, metals, ceramics, and chemical functionalization routes.
  • Low Density, High Performance: The low tap and apparent density values enhance dispersion, making these nanoplates effective even at low loadings.

Key Advantages:

  • Improves tensile strength, stiffness & mechanical durability
  • Enhances corrosion resistance and wear resistance in composites
  • Strong antistatic and conductive performance
  • Excellent lubricating properties
  • High purity ensures consistent performance in research and industrial production

Storage Conditions:

  • Store sealed, in a dry, cool, and light-protected environment
  • Maximum recommended shelf life (unopened): 6 months

Application Uses:

  • Composite Reinforcement: Enhances mechanical strength, stiffness, abrasion resistance, and durability in polymers, thermoplastics, epoxies, and ceramic composites. 
  • Conductive & Antistatic Materials: Used in conductive coatings, antistatic plastics, EMI shielding, and high-conductivity adhesives.
  • Lubricants & Wear-Resistant Additives: Graphene’s layered structure provides excellent lubrication properties and reduces friction in industrial formulations.
  • Corrosion-Resistant Systems: Improves chemical resistance and extends lifespan of coatings and surface treatments.
  • Energy & Electronics: Useful for electrodes, supercapacitors, battery additives, sensor devices, and hybrid nanocarbon systems.

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Product information

Country: United Kingdom
Purity: 99.9%
Research Focus: Advanced Nanomaterials & Applications
Research Grade: Advanced-Grade Scientific Precision
Performance Metric: High Efficiency & Stability
Year of Manufacture: 2025
Scale: Signature Prototype Model

Ridgehart Graphene Nanoplates (3–10 nm Thickness) – High-Purity, High-Conductivity Carbon Nanomaterials
Ridgehart Graphene Nanoplates (3–10 nm Thickness) – High-Purity, High-Conductivity Carbon Nanomaterials

Industrial

Through generations, the Ridgehart name became synonymous with integrity, precision, and innovation, quietly supplying advanced materials to Britain’s leading institutions, from early aircraft pioneers to the forefront of medical research.

Industrial

Research

At the heart of Ridgehart lies a world-class research division dedicated to advancing the frontiers of nanotechnology for industry and science. Within our Cambridge laboratories, Ridgehart’s scientists collaborate with partners across aerospace, energy, and biotechnology to develop materials and processes that redefine efficiency, strength, and sustainability. Every project reflects our enduring philosophy to engineer progress with precision, purpose, and British integrity.

Research

Molecular Composition

Ridgehart’s exploration extends beyond materials into the living world. Our microbiology and cellular research division studies the interactions between biological systems and engineered nanomaterials, unlocking applications in medicine, environmental science, and bioengineering. By understanding life at the cellular level, Ridgehart bridges the gap between nature and technology, crafting innovations that are as alive with possibility as they are defined by precision.

Microbiology Solutions
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From our customers

★★★★★

We incorporated Ridgehart’s graphene into our composite materials research, and the performance gains were beyond expectations. Excellent dispersion, clean surface morphology, and reproducible results. You can tell their products are made by people who truly understand materials science.

Rachel M. Austin, TX
★★★★★

Used Ridgehart's kit for five weeks. I went in sceptical but ended up impressed. My cheek texture smoothed out and I had fewer rough patches.

Melanie F. London, UK
★★★★★

I’ve worked with several research suppliers over the years, and Ridgehart’s cellulose nanomaterials are by far the most uniform and reliable. The surface chemistry was exactly as described, and the results were reproducible across multiple experiments. It’s clear their team truly understands the science behind what they produce.

Biotech Inc Los Angeles, CA

The Art of Precision

Born from a pursuit of perfection, Ridgehart redefines material excellence. Every material we craft reflects decades of mastery, discipline, and an unwavering devotion to excellence at the smallest scale.