Understanding Oxetan-3-ylmethanol: Properties, Applications, and Manufacturing
In the realm of fine chemicals, certain compounds stand out for their versatility and importance in various industrial applications. Oxetan-3-ylmethanol, identified by its CAS number 6246-06-6, is one such compound, highly valued for its role in organic synthesis and the production of pharmaceutical intermediates. Understanding its chemical properties, typical applications, and the significance of reliable manufacturing is crucial for anyone in the procurement or research and development sectors.
Oxetan-3-ylmethanol is a heterocyclic compound featuring a four-membered oxetane ring and a hydroxymethyl substituent. Its molecular formula is C4H8O2, and its molecular weight is approximately 88.11 g/mol. Physically, it is often described as a white powder, indicating a solid state under standard conditions. The compound exhibits moderate polarity due to the hydroxyl group, which influences its solubility and reactivity. With a boiling point of 204.461°C at 760 mmHg and a flash point of 103.936°C, it possesses characteristics typical of many organic intermediates used in synthesis.
The primary applications of Oxetan-3-ylmethanol lie in organic synthesis and as a crucial intermediate for pharmaceuticals. Its unique structure allows it to serve as a building block for creating more complex organic molecules, which are essential for drug discovery and development. The ability to participate in various chemical reactions, including ring-opening and functional group modifications, makes it a versatile tool for chemists. For businesses looking to buy this compound, ensuring high purity (typically ≥99.0%) is critical for achieving successful synthesis outcomes.
When sourcing chemical intermediates, partnering with a reliable manufacturer is key. Manufacturers with robust quality control systems can ensure the consistent purity and availability of Oxetan-3-ylmethanol. Companies often seek suppliers from regions with strong chemical manufacturing capabilities, such as China, to obtain competitive pricing and a stable supply chain. Obtaining a quote for the desired quantity and purity is a standard practice for procurement managers evaluating potential suppliers. Furthermore, understanding the recommended storage conditions—keeping it in a tightly closed container in a cool, dry, well-ventilated area—is important for maintaining product integrity.
In conclusion, Oxetan-3-ylmethanol (CAS 6246-06-6) is an indispensable chemical intermediate with significant utility in advanced synthesis. Its chemical properties, coupled with the assurance of high purity and reliable sourcing from capable manufacturers, make it a valuable component for innovation in the chemical and pharmaceutical industries.
Perspectives & Insights
Bio Analyst 88
“The primary applications of Oxetan-3-ylmethanol lie in organic synthesis and as a crucial intermediate for pharmaceuticals.”
Nano Seeker Pro
“Its unique structure allows it to serve as a building block for creating more complex organic molecules, which are essential for drug discovery and development.”
Data Reader 7
“The ability to participate in various chemical reactions, including ring-opening and functional group modifications, makes it a versatile tool for chemists.”