VINYLPHENYLDICHLOROSILANE: Advancing Polymer Science and Surface Treatments
The continuous evolution of polymer science and surface treatments relies heavily on the availability of specialized chemical building blocks. VINYLPHENYLDICHLOROSILANE, designated by CAS number 7719-02-0, is a prominent organosilicon compound that plays a pivotal role in these advancements. Its unique chemical structure, featuring both a reactive vinyl group and hydrolyzable chlorine atoms, makes it a highly sought-after intermediate for chemists and material engineers. For those involved in R&D and manufacturing, understanding the utility and sourcing of this compound from established suppliers is essential.
VINYLPHENYLDICHLOROSILANE, a clear liquid, boasts a chemical makeup that includes a phenyl group, a vinyl group, and two chlorine atoms directly bonded to a silicon atom. This configuration provides distinct reactive sites. The vinyl moiety readily participates in polymerization reactions, allowing it to be incorporated into polymer chains, thereby modifying their properties. Simultaneously, the Si-Cl bonds are susceptible to hydrolysis and nucleophilic substitution. This means VINYLPHENYLDICHLOROSILANE can react with hydroxyl, amino, or alkoxide groups present on surfaces or in other molecules. This duality makes it exceptionally useful for creating cross-linked networks in silicone polymers or for grafting specific functionalities onto substrates.
In the field of polymer science, VINYLPHENYLDICHLOROSILANE serves as a valuable monomer or co-monomer. Its incorporation into silicone polymers can significantly enhance thermal stability, mechanical strength, and resistance to UV radiation, due to the presence of the phenyl ring. This leads to the development of high-performance silicone elastomers, resins, and fluids used in demanding applications such as aerospace, automotive, and electronics. When you are looking to buy VINYLPHENYLDICHLOROSILANE for such purposes, partnering with a reliable manufacturer that guarantees purity (typically 95%) is crucial for achieving consistent polymerization results.
Beyond polymer synthesis, VINYLPHENYLDICHLOROSILANE is widely applied in surface treatment. It can be used to modify the surface properties of materials like glass, metal oxides, or even other polymers. By forming stable covalent bonds with surface functional groups, it can impart characteristics such as hydrophobicity, oleophobicity, or improved adhesion for subsequent coatings. This makes it indispensable in the formulation of advanced protective coatings, specialized adhesives, and functionalized nanomaterials. Sourcing this chemical from trusted suppliers, especially those offering competitive VINYLPHENYLDICHLOROSILANE prices, can greatly facilitate these surface engineering efforts.
For procurement managers, identifying key manufacturers and suppliers is a critical part of the process. Many reputable chemical companies, particularly in China, specialize in organosilicon intermediates and offer VINYLPHENYLDICHLOROSILANE. Comparing quotations and ensuring product consistency from these suppliers is vital. A reliable supply chain ensures that your research and production efforts are not hampered by material shortages or quality variations.
In conclusion, VINYLPHENYLDICHLOROSILANE (CAS 7719-02-0) is a multifaceted chemical intermediate with profound implications for polymer science and surface treatments. Its ability to enable the creation of advanced materials with tailored properties underscores its importance. By strategically sourcing this compound from qualified manufacturers, industries can continue to drive innovation and develop next-generation products.
Perspectives & Insights
Bio Analyst 88
“The continuous evolution of polymer science and surface treatments relies heavily on the availability of specialized chemical building blocks.”
Nano Seeker Pro
“VINYLPHENYLDICHLOROSILANE, designated by CAS number 7719-02-0, is a prominent organosilicon compound that plays a pivotal role in these advancements.”
Data Reader 7
“Its unique chemical structure, featuring both a reactive vinyl group and hydrolyzable chlorine atoms, makes it a highly sought-after intermediate for chemists and material engineers.”