2,3,4,5,6-Pentafluorostyrene (CAS 653-34-9): A Premier Monomer for High-Performance Polymers

Discover the exceptional properties and versatile applications of 2,3,4,5,6-Pentafluorostyrene, a crucial building block for advanced polymers in electronics, coatings, and beyond. As a leading supplier, we provide high-purity monomer to fuel your innovation.

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Key Advantages of 2,3,4,5,6-Pentafluorostyrene

Exceptional Thermal and Chemical Stability

The robust carbon-fluorine bonds in 2,3,4,5,6-Pentafluorostyrene impart remarkable thermal and chemical inertness to the resulting polymers, making them suitable for harsh environments. This is critical for applications requiring long-term performance.

Tunable Electronic and Optical Properties

As a fluorinated monomer, it offers unique electronic characteristics and a low refractive index, crucial for the development of advanced dielectric materials in organic electronics and components for optical waveguides. You can buy this intermediate to tailor your material's optical performance.

Versatile Post-Polymerization Modification

The reactive para-fluorine atom allows for facile functionalization via nucleophilic substitution, enabling the creation of custom polymers with diverse properties like proton conductivity or specific surface chemistries. This makes it an ideal chemical intermediate for specialized applications.

Diverse Applications Driven by Pentafluorostyrene

Organic Electronics

Used as a dielectric layer in OTFTs and other organic semiconductor devices, contributing to improved stability and performance. Source this high-purity monomer for your next generation electronics.

Advanced Coatings

Forms the basis for antifouling, antifogging, and superhydrophobic coatings due to its low surface energy and hydrophobicity. Consider purchasing this versatile chemical for your coating formulations.

Biomedical Applications

Incorporated into polymeric nanoparticles for MRI contrast agents and functionalized surfaces for biosensors. Buy this key component to advance your biomedical research.

Fuel Cell Membranes

Modified with acidic groups (sulfonation/phosphonation) to create proton-conducting membranes for high-temperature fuel cell applications. We are a reliable supplier for these critical chemical intermediates.