1-(1-Ethoxyethoxy)-4-vinylbenzene: CAS 157057-20-0 Applications and Sourcing Guide
The chemical industry is constantly evolving, with new compounds and applications emerging to drive technological advancements. Among these, certain organic intermediates play pivotal roles in shaping the materials of the future. One such compound is 1-(1-Ethoxyethoxy)-4-vinylbenzene, identified by its CAS number 157057-20-0. This specialty chemical is gaining traction for its unique properties, particularly in sophisticated manufacturing and research environments.
The molecular structure of 1-(1-Ethoxyethoxy)-4-vinylbenzene offers a unique combination of characteristics that make it valuable in several key industries. Its vinyl group allows it to readily participate in polymerization reactions, making it an excellent monomer for creating polymers with specific functionalities. The ethoxyethoxy side chain contributes to its solubility and can influence the physical properties of the resulting polymers, such as glass transition temperature and mechanical strength.
A primary application area for 1-(1-Ethoxyethoxy)-4-vinylbenzene is in the field of microfabrication. The quest for miniaturization in electronics and the development of advanced display technologies necessitate materials that can be processed with extreme precision. This monomer is utilized in the formulation of photoresists and other sensitive layers where achieving excellent line edge roughness is critical. By enabling the creation of finer, sharper features, it directly contributes to the performance and efficiency of microelectronic devices and sophisticated imaging systems.
Beyond microfabrication, this versatile compound is also an important intermediate in the synthesis of specialty polymers. These polymers can be designed for a wide range of applications, including advanced coatings, adhesives, and functional materials. Researchers looking to develop novel materials with tailored properties often turn to compounds like 1-(1-Ethoxyethoxy)-4-vinylbenzene for its reactive capabilities and the structural diversity it can introduce into polymer chains.
For procurement professionals and R&D scientists seeking to buy 1-(1-Ethoxyethoxy)-4-vinylbenzene, understanding its CAS number, 157057-20-0, is essential for accurate identification and sourcing. When searching for this chemical, it's crucial to prioritize suppliers who can provide detailed specifications, including purity levels (often specified as ≥98.0% assay) and physical properties. Working with a reputable manufacturer ensures that you receive a product that meets the stringent requirements for your specific application.
When considering where to purchase 1-(1-Ethoxyethoxy)-4-vinylbenzene, the benefits of sourcing from a reliable manufacturer cannot be overstated. We, as a dedicated producer of this specialty chemical, offer high-purity material along with competitive pricing and consistent availability. Our commitment is to provide the scientific and industrial communities with the essential building blocks they need to innovate and produce at the highest level. Requesting a quote is the first step to securing a dependable supply for your research or production needs.
In conclusion, 1-(1-Ethoxyethoxy)-4-vinylbenzene (CAS 157057-20-0) is a key organic intermediate with significant applications in high-tech industries. Its ability to enhance precision in microfabrication and enable the creation of advanced polymers makes it a sought-after material. By partnering with a trusted manufacturer, you can ensure access to high-quality 1-(1-Ethoxyethoxy)-4-vinylbenzene, driving your projects forward with confidence.
Perspectives & Insights
Core Pioneer 24
“Its ability to enhance precision in microfabrication and enable the creation of advanced polymers makes it a sought-after material.”
Silicon Explorer X
“By partnering with a trusted manufacturer, you can ensure access to high-quality 1-(1-Ethoxyethoxy)-4-vinylbenzene, driving your projects forward with confidence.”
Quantum Catalyst AI
“The chemical industry is constantly evolving, with new compounds and applications emerging to drive technological advancements.”