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HS Code |
725785 |
| Cas Number | 85543-16-0 |
| Molecular Formula | C14H9F21O2 |
| Molecular Weight | 570.19 g/mol |
| Appearance | Clear to slightly yellow liquid |
| Boiling Point | 155-158°C at 20 mmHg |
| Density | 1.6 g/cm3 at 25°C |
| Refractive Index | 1.342 at 20°C |
| Flash Point | >110°C (closed cup) |
| Purity | ≥97% |
| Solubility | Insoluble in water; soluble in organic solvents |
| Storage Temperature | 2-8°C |
| Ec Number | 287-008-9 |
As an accredited 1H,1H,11H-Perfluoroundecyl Methacrylate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 1H,1H,11H-Perfluoroundecyl Methacrylate is supplied in a 100g amber glass bottle with a screw cap and safety label. |
| Shipping | 1H,1H,11H-Perfluoroundecyl Methacrylate is shipped in tightly sealed, chemical-resistant containers to prevent leaks and contamination. It is classified as a hazardous material, requiring proper labeling and documentation. Transport is typically via ground or air freight, following applicable regulations for flammable and environmentally hazardous substances. Store away from heat and incompatible materials. |
| Storage | 1H,1H,11H-Perfluoroundecyl methacrylate should be stored in a cool, dry, and well-ventilated area, away from sources of heat, ignition, and direct sunlight. Keep the container tightly closed and away from incompatible materials such as strong oxidizing agents, acids, and bases. Store in the original container or a suitable, chemical-resistant vessel to prevent contamination and moisture ingress. |
Applications of 1H,1H,11H-Perfluoroundecyl Methacrylate in Industrial Manufacturing1H,1H,11H-Perfluoroundecyl Methacrylate serves as a key raw material in several advanced manufacturing sectors, providing specialized surface functionality and performance improvements in high-value coatings, polymers, and membrane fabrication. Below, we outline targeted industrial applications with details on regulatory compliance, usage ratios, process integration, and the types of final products produced by downstream customers. 1. High-Performance Fluorinated Coatings for ElectronicsElectronics manufacturers utilize this monomer to produce coatings with strong hydrophobic and oleophobic properties, crucial for enhancing water and oil resistance in sensitive device components. Downstream, these coatings extend device longevity and reliability under harsh operating conditions, including humidity and chemical exposure. The monomer is usually copolymerized with acrylates or methacrylates under controlled conditions, ensuring optimal surface fluorination to meet precise performance targets for touchscreens, glass sensors, and circuit boards. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
2. Self-Cleaning Architectural and Automotive Glass TreatmentsGlazing manufacturers and processors deploy this monomer for durable, non-stick surface coatings on architectural and automotive glass. The strong fluorinated side chain delivers exceptional contact angle properties, ensuring rainwater and dust easily slide off. Formulators incorporate the monomer into silane-acrylate hybrids or sol-gel systems, enabling efficient single- or multi-layer deposition on float glass during factory finishing lines, thus reducing the maintenance frequency for end users. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
3. Water and Oil Repellent Textile FinishingTextile chemical innovators include this fluorinated monomer in advanced polymer dispersions for high-end performance fabrics. Manufacturers apply these dispersions to fibers using padding, exhaustion, or spray techniques, imparting lasting repellency to water-based soils, oils, and stains after heat curing. Regulatory focus now limits long-chain fluorinated substances in textiles, so precise polymerization controls and validated extractable testing form part of every recipe developed for the apparel and upholstery industries. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
4. Advanced Membranes for Filtration and SeparationManufacturers of specialty membranes use this methacrylate to tune hydrophobicity and chemical resistance in ultrafiltration, nanofiltration, and reverse osmosis systems. The monomer’s perfluorinated chain resists fouling and chemical attack in demanding liquid separation applications. Copolymerization with other monomers such as methyl methacrylate or acrylonitrile takes place during the dope formulation step, before casting or spinning into asymmetric or composite membranes, supporting higher flux and longer operational life. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
5. Surface Modification Agents in Microfluidic DevicesProducers of microfluidic components incorporate the fluorinated methacrylate for precise surface energy control inside channels and traps. The monomer co-polymerizes onto device surfaces during microfabrication or is grafted via plasma-induced processes, generating highly defined fluid–surface interfaces. This functionalization allows for accurate droplet manipulation, effective prevention of non-specific adsorption, and improved movement of biological or chemical samples inside micro-scale diagnostic or sensing cartridges. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
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Competitive 1H,1H,11H-Perfluoroundecyl Methacrylate prices that fit your budget—flexible terms and customized quotes for every order.
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Tel: +8615371019725
Email: admin@sinochem-nanjing.com
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