The Significance of Methyl 5-allyl-3-methoxysalicylate in Modern Organic Synthesis
In the dynamic field of chemical synthesis, the availability of high-quality intermediates is paramount to the success of research and development initiatives. Methyl 5-allyl-3-methoxysalicylate, identified by CAS number 85614-43-3, stands out as a particularly valuable organic building block. Its unique chemical structure and reactivity make it an indispensable component in a wide array of synthetic pathways, particularly within the pharmaceutical and fine chemical industries.
The primary utility of Methyl 5-allyl-3-methoxysalicylate lies in its role as a synthesis intermediate. It is notably employed in the production of Fallypride, a compound with significant research interest. Furthermore, it serves as a key reactant in the synthesis of enterobactin scaffolds and allylic amines. These applications highlight its versatility and importance in creating complex molecular architectures that are essential for advancements in medicinal chemistry and materials science.
Understanding the chemical properties of Methyl 5-allyl-3-methoxysalicylate is crucial for effective utilization. It typically appears as a white to pale yellow crystalline powder, with a melting point in the range of 54-58 °C. Its molecular formula is C12H14O4, and its molecular weight is 222.24 g/mol. These characteristics, coupled with a purity level often exceeding 98%, ensure its suitability for precise synthetic procedures.
For researchers and manufacturers looking to procure this vital compound, understanding the market and sourcing options is key. Several suppliers offer Methyl 5-allyl-3-methoxysalicylate, with varying price points depending on quantity and purity. When considering a purchase, it's advisable to look for reliable manufacturers and suppliers who can guarantee consistent quality and timely delivery. The ability to secure competitive pricing for this methyl 5-allyl-3-methoxysalicylate is also a significant factor for large-scale operations.
The applications extend beyond pharmaceuticals, positioning Methyl 5-allyl-3-methoxysalicylate as a fundamental building block in general organic synthesis. Its reactive allyl and ester groups, along with the methoxy and hydroxyl substituents on the aromatic ring, provide multiple points for chemical modification. This makes it a sought-after material for chemists exploring new reactions and developing novel compounds with specific properties. The strategic purchase of this chemical can significantly streamline research efforts.
In conclusion, Methyl 5-allyl-3-methoxysalicylate is more than just a chemical compound; it is an enabler of scientific innovation. Its role as a methyl 5-allyl-3-methoxysalicylate intermediate in critical syntheses underscores its value. For those in need of this essential material, exploring the options to buy Methyl 5-allyl-3-methoxysalicylate from reputable sources ensures the integrity and success of their synthetic endeavors.
Perspectives & Insights
Logic Thinker AI
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