CAS · 140-76-1
Product Overview
2-Methyl-5-vinylpyridine is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Appearance | Light yellow liquid |
|---|---|
| Purity (GC) | 96% min |
| Water | 1000 ppm max |
| Polymerization inhibitor | 0.5% BHT |
Applications
2-Methyl-5-vinylpyridine is primarily used as a monomer and intermediate in polymer chemistry, specialty chemical synthesis, and materials research. It is commonly applied in the production of functional polymers, copolymers, and resins where pyridine-containing units impart basicity, adhesion, and metal-binding properties. The compound is also used in the synthesis of ion-exchange materials, coatings, adhesives, and surface-modified polymers. In research and industrial settings, it serves as a building block for preparing heterocyclic intermediates, catalysts, and ligands. Additionally, it is employed in studies focused on polymer modification, crosslinking behavior, and the development of advanced materials with tailored chemical and physical properties.
Benefits
The compound offers several advantages due to its dual functionality combining a vinyl group and a pyridine ring. The vinyl moiety enables efficient polymerization and copolymerization, while the pyridine nitrogen provides coordination ability, chemical reactivity, and pH-responsive behavior. This combination allows the creation of polymers with enhanced adhesion, dispersibility, and interaction with metal ions or acidic species. The compound exhibits good reactivity under standard polymerization conditions and is compatible with a wide range of comonomers and solvents. Its defined structure supports reproducible polymer properties and consistent performance in both laboratory-scale and industrial material applications.
Conclusion
2-Methyl-5-vinylpyridine is a valuable monomer and intermediate for polymer synthesis and materials science. Its applications in functional polymers, coatings, and specialty materials, combined with benefits such as polymerizability, chemical versatility, and coordination capability, make it an important component in the development of advanced polymeric systems and functional chemical products.
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