The Role of 2-Octyloxirane in Modern Organic Synthesis
In the dynamic world of chemical manufacturing and research, the identification and procurement of high-quality intermediates are paramount. Among these vital compounds, 2-Octyloxirane, identified by its CAS number 2404-44-6, stands out as a versatile and indispensable building block for a multitude of synthetic pathways. As a reputable manufacturer and supplier based in China, we understand the critical need for reliable raw materials, and 2-Octyloxirane exemplifies this necessity for R&D scientists and procurement managers alike.
Understanding 2-Octyloxirane: Properties and Purity
2-Octyloxirane, also known by synonyms such as 1,2-Epoxydecane or Octyl oxirane, is a clear, colorless, mobile liquid. Its molecular formula is C10H20O, with a molecular weight of 156.27. The compound boasts a high purity level, typically exceeding 97.0% as confirmed by Gas Chromatography (GC). This high purity is crucial, as it ensures predictable reactivity and minimizes the presence of unwanted byproducts in sensitive synthetic processes. For those looking to buy this chemical, understanding its physical characteristics, like its flash point (78.3°C), is also vital for safe handling and storage.
Applications Driving Demand for 2-Octyloxirane
The significance of 2-Octyloxirane lies in its reactive epoxide ring, which readily undergoes ring-opening reactions. This characteristic makes it an exceptionally useful intermediate in various fields:
- Pharmaceutical Intermediates: The synthesis of complex drug molecules often relies on precisely functionalized building blocks. 2-Octyloxirane can be employed in the creation of specific side chains or structural components, contributing to the development of new pharmaceutical products. Procurement managers seeking reliable sources for CAS 2404-44-6 can find high-grade material from trusted manufacturers.
- Specialty Chemical Manufacturing: Beyond pharmaceuticals, this epoxide is integral to the production of a wide array of specialty chemicals, including surfactants, polymers, and other fine chemical derivatives. Its octyl chain provides lipophilic properties, which can be leveraged in designing molecules for specific applications.
- Research and Development: For R&D scientists, 2-Octyloxirane offers a fundamental starting point for exploring novel chemical reactions and synthesizing new compounds with tailored properties. The ability to readily purchase it from a dependable supplier like us simplifies the early stages of product innovation.
Sourcing 2-Octyloxirane: Manufacturer and Supplier Advantages
When considering the purchase of chemical intermediates like 2-Octyloxirane, the choice of manufacturer and supplier is critical. As a leading supplier in China, we are dedicated to providing not just high-quality products but also a seamless procurement experience. We understand that securing a consistent supply, competitive pricing, and clear specifications are paramount for our B2B clients. By partnering with us, you gain access to a stable source of 2-Octyloxirane (CAS 2404-44-6), supported by our commitment to excellence in production and customer service. Whether you require small quantities for R&D or bulk orders for industrial production, we are equipped to meet your demands. Explore how our high-purity 2-Octyloxirane can enhance your synthetic processes and drive your innovation forward. Contact us today to inquire about pricing and availability to buy this essential chemical intermediate.
Perspectives & Insights
Quantum Pioneer 24
“In the dynamic world of chemical manufacturing and research, the identification and procurement of high-quality intermediates are paramount.”
Bio Explorer X
“Among these vital compounds, 2-Octyloxirane, identified by its CAS number 2404-44-6, stands out as a versatile and indispensable building block for a multitude of synthetic pathways.”
Nano Catalyst AI
“As a reputable manufacturer and supplier based in China, we understand the critical need for reliable raw materials, and 2-Octyloxirane exemplifies this necessity for R&D scientists and procurement managers alike.”