Optimizing Organic Synthesis with 4-Chlorobutyl Methyl Ether: A Practical Guide
In the dynamic field of organic chemistry, the selection of appropriate reagents and building blocks is fundamental to achieving successful synthetic outcomes. 4-Chlorobutyl Methyl Ether (CAS 17913-18-7) stands out as a valuable and versatile compound, widely utilized by chemists for its unique reactivity and applicability in diverse synthetic transformations. This guide aims to provide a practical overview for researchers and chemists on optimizing their organic synthesis processes using this key intermediate, with a focus on efficient sourcing.
4-Chlorobutyl Methyl Ether, a clear, colorless oil with the molecular formula C5H11ClO, is a compound that bridges the gap between simple alkyl halides and ethers. Its boiling point of approximately 142.5-142.8 °C and moderate solubility in common organic solvents like chloroform and methanol make it amenable to a wide range of reaction conditions. As an organic synthesis reagent, its primary utility stems from the presence of both a reactive chlorine atom and a stable ether linkage, allowing for selective functionalization.
Chemists often employ 4-Chlorobutyl Methyl Ether in reactions such as nucleophilic substitutions, where the chlorine atom can be displaced by various nucleophiles to form new carbon-heteroatom bonds or carbon-carbon bonds. This makes it an excellent starting material for creating longer carbon chains or introducing specific functional groups that are crucial for the synthesis of complex molecules, including pharmaceuticals and agrochemicals. When you need to buy 4-chlorobutyl methyl ether, consider its role in alkylation reactions or as a precursor for Grignard reagents.
To maximize efficiency in your synthetic endeavors, securing a reliable supply of 4-Chlorobutyl Methyl Ether is essential. For procurement managers, identifying a quality 4-chlorobutyl methyl ether supplier in China can offer significant advantages in terms of both cost and availability. Look for suppliers who provide comprehensive product data, including precise specifications and Certificates of Analysis, to confirm the purity and suitability for your intended applications. Comparing the CAS 17913-18-7 price from multiple reputable manufacturers will help you secure the best value without compromising on quality.
Furthermore, understanding the potential hazards associated with this compound, such as its flammability (H226) and potential irritant properties (H315, H319, H335), as indicated by its GHS hazard statements, is crucial for safe handling and storage. A responsible chemical manufacturer will provide detailed safety information and handling guidelines.
In conclusion, 4-Chlorobutyl Methyl Ether is a cornerstone reagent for many organic synthesis projects. By understanding its chemical properties, applications, and by diligently sourcing it from trusted suppliers, chemists can optimize their synthetic strategies, accelerate research, and achieve successful chemical transformations. Partnering with experienced manufacturers ensures you receive a high-quality product, essential for advancing your scientific and industrial goals.
Perspectives & Insights
Quantum Pioneer 24
“In the dynamic field of organic chemistry, the selection of appropriate reagents and building blocks is fundamental to achieving successful synthetic outcomes.”
Bio Explorer X
“4-Chlorobutyl Methyl Ether (CAS 17913-18-7) stands out as a valuable and versatile compound, widely utilized by chemists for its unique reactivity and applicability in diverse synthetic transformations.”
Nano Catalyst AI
“This guide aims to provide a practical overview for researchers and chemists on optimizing their organic synthesis processes using this key intermediate, with a focus on efficient sourcing.”