Methyl 2-Bromobutanoate (CAS 3196-15-4): Your Key Building Block
Methyl 2-Bromobutanoate, identified by its CAS number 3196-15-4, is a pivotal organic compound frequently employed as a building block in the synthesis of more complex molecules. Its unique structure, featuring a bromine atom adjacent to an ester group, lends itself to a variety of valuable chemical transformations. For chemists and formulators in the pharmaceutical and fine chemical industries, understanding the utility and sourcing options for this intermediate is crucial. This article explores the applications and significance of Methyl 2-Bromobutanoate, emphasizing its role as a versatile intermediate available from reputable suppliers.
One of the primary uses of Methyl 2-Bromobutanoate is in organic synthesis, particularly within the realm of pharmaceutical intermediates. The bromine atom is a good leaving group, making it highly reactive in nucleophilic substitution reactions. This property allows for the introduction of various functional groups, paving the way for the construction of diverse molecular architectures essential for drug discovery and development. For example, it can be a precursor in Reformatsky reactions, a classic organozinc-mediated reaction used to form carbon-carbon bonds, leading to the synthesis of beta-hydroxy esters and subsequent cyclizations. This makes it an indispensable reagent for manufacturers looking to buy pharmaceutical intermediates.
Beyond pharmaceuticals, Methyl 2-Bromobutanoate is a valuable component in the synthesis of fine chemicals. These chemicals often require precise molecular structures for specific applications in areas like agrochemicals, flavor and fragrance compounds, and advanced materials. The controlled reactivity of this brominated ester enables chemists to achieve high selectivity and yield in complex synthetic routes. Researchers seeking to purchase fine chemicals for novel applications will find this intermediate to be a reliable starting material.
The chemical properties of Methyl 2-Bromobutanoate, such as its clear, slightly yellow liquid appearance and its solubility in common organic solvents like alcohol and ether, further enhance its usability. Its boiling point of approximately 171 °C at atmospheric pressure also facilitates purification and handling in laboratory and industrial settings. When considering its purchase, looking for suppliers who provide detailed technical data sheets and ensure high purity (often 97% or above) is essential for successful experimental outcomes.
Sourcing Methyl 2-Bromobutanoate from reliable manufacturers, particularly those based in China, can offer significant advantages in terms of both cost and availability. Many suppliers in China specialize in producing a wide range of organic intermediates and are well-equipped to handle orders of varying sizes, from laboratory research quantities to industrial-scale production. This ensures that researchers and manufacturers can secure a consistent supply of this critical building block at competitive prices.
In essence, Methyl 2-Bromobutanoate (CAS 3196-15-4) stands as a testament to the power of well-designed chemical intermediates. Its reactivity, purity, and versatility make it a cornerstone for innovation in pharmaceutical and fine chemical synthesis. For those looking to buy this essential compound, partnering with experienced chemical suppliers ensures access to high-quality material, critical for advancing scientific discovery and industrial production. Consider NINGBO INNO PHARMCHEM CO.,LTD. as your trusted source for this and other vital chemical building blocks.
Perspectives & Insights
Bio Analyst 88
“The controlled reactivity of this brominated ester enables chemists to achieve high selectivity and yield in complex synthetic routes.”
Nano Seeker Pro
“Researchers seeking to purchase fine chemicals for novel applications will find this intermediate to be a reliable starting material.”
Data Reader 7
“The chemical properties of Methyl 2-Bromobutanoate, such as its clear, slightly yellow liquid appearance and its solubility in common organic solvents like alcohol and ether, further enhance its usability.”