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Graphite Fluoride (Carbon Monofluoride) Micron Powder, Size: 10-20 μm, F/C Ratio : ≥1.0

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NG04GF0102
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5 grams / 61 €
25 grams / 118 €   
100 grams / 328 €   
500 grams / 1180 €
1000 grams / 2050 € 

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Graphite Fluoride (Carbon Monofluoride) Micron Powder

Size: 10-20 μm, F/C Ratio : 1.0

Graphite Fluoride or Carbon Monofluoride is an advanced functional material structured as a non-stoichiometric graphite intercalation compound, synthesized through a specialized high-temperature dry reaction between carbon and fluorine gas. This premium-grade material features a layered, flake-like morphology and exhibits excellent powder fluidity. It is characterized by exceptionally low surface free energy, outstanding chemical inertness, and superb thermal stability. Benefiting from a proprietary automated internal circulation manufacturing process that guarantees structural uniformity and production safety, the product delivers superior electrical insulation, high dielectric breakdown voltage resistance, and highly pronounced superhydrophobic (waterproof) behavior. Its unique intrinsic properties make it an exceptional choice for demanding industrial environments requiring ultra-low friction and reliable surface separation under harsh conditions.

Technical Properties

F/C Ratio ≥1.0
Particle Size 10-20 μm
Morphology Layered-Flake Structure
Appearance Off-white to White
Thermal Stability 350°C
CAS No 51311-17-2

Applications

  • Mold Release Agents: Thanks to its high thermal stability, layered flake structure, and exceptional non-wetting properties, it serves as a premium high-temperature mold release agent that prevents component adhesion, reduces wear on molds, and ensures clean part separation in demanding manufacturing processes.
  • Solid Lubrication Additives: Utilizing its ultra-low surface free energy and excellent powder fluidity, it is widely adopted as a high-performance additive in solid lubricants and greases, functioning efficiently in heavy-duty and high-temperature environments.
  • Coatings and Surface Engineering: It is integrated into surface coatings for wiper rubbers and elastic sealing components as an advanced anti-friction and wear-resistant additive, significantly improving smooth mechanical action and extending service life.
  • Catalyst Supports and Chromatography: Due to its excellent chemical inertness and stable structured surface, it is successfully employed as an antioxidant catalyst carrier and a specialized packing material for chromatography columns in chemical processing.
  • Advanced Printing Inks: It is utilized as a functional additive in dry inks and toner formulations to optimize particle flowability, control electrostatic charges, and enhance print quality.
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