Optimizing Organic Synthesis with 4-Methoxy-2-methylphenylboronic Acid: A Focus on Suzuki Coupling
The field of organic synthesis is continually seeking more efficient and versatile methodologies to construct complex molecules. At the forefront of these advancements is the Suzuki-Miyaura coupling reaction, a powerful palladium-catalyzed process that forms carbon-carbon bonds. Essential to the success of this reaction is the availability of high-quality boronic acid reagents. Among these, 4-Methoxy-2-methylphenylboronic Acid, with its distinctive chemical structure and reactivity, stands out as a key player. This article explores the advantages of using this compound in organic synthesis, particularly focusing on its performance in Suzuki coupling, and emphasizes the importance of reliable sourcing from suppliers like NINGBO INNO PHARMCHEM CO.,LTD.
4-Methoxy-2-methylphenylboronic Acid, known by its CAS number 208399-66-0, is a crystalline white solid that boasts a purity of 97% or higher. This high purity is fundamental for achieving reproducible results in demanding organic synthesis applications. Its molecular formula, C8H11BO3, and molecular weight of 165.98 g/mol, define its chemical identity. As a fine chemical intermediate, its primary application lies in its ability to participate efficiently in Suzuki coupling reactions. This process is widely adopted across various industries, from pharmaceuticals to materials science, due to its tolerance of a wide range of functional groups and its high yields.
The strategic advantage of using 4-methoxy-2-methylphenylboronic acid in organic synthesis lies in its predictable reactivity and the ease with which it can be handled. When researchers look to buy 4-methoxy-2-methylphenylboronic acid, they are seeking a reliable building block that will contribute to the success of their synthetic targets. The compound's specific arrangement of a methoxy group and a methyl group on the phenyl ring, coupled with the boronic acid functionality, allows for targeted modifications and the creation of diverse molecular scaffolds. Understanding the melting point, typically between 169-174 °C, is also helpful for chemists designing reaction conditions. The support of a dependable 4-methoxy-2-methylphenylboronic acid supplier, such as NINGBO INNO PHARMCHEM CO.,LTD., ensures that the consistent quality required for such reactions is maintained.
The impact of 4-methoxy-2-methylphenylboronic acid extends to the development of advanced materials, agrochemicals, and specialty chemicals, where precise molecular construction is paramount. Its involvement in Suzuki coupling allows chemists to efficiently assemble complex molecular architectures, often reducing the number of synthetic steps and improving overall process efficiency. For companies and research institutions, identifying a trusted 4-methoxy-2-methylphenylboronic acid manufacturer is key to securing a stable supply chain for their critical intermediates. NINGBO INNO PHARMCHEM CO.,LTD. prides itself on being such a partner, committed to providing materials that meet the highest standards of quality and performance.
In summary, 4-Methoxy-2-methylphenylboronic Acid is an indispensable tool for modern organic chemists. Its efficacy in Suzuki coupling, combined with its high purity and the availability from reputable suppliers like NINGBO INNO PHARMCHEM CO.,LTD., makes it a sought-after intermediate for a broad spectrum of synthetic applications. By understanding and leveraging the capabilities of this compound, researchers can push the boundaries of chemical innovation.
Perspectives & Insights
Alpha Spark Labs
“This article explores the advantages of using this compound in organic synthesis, particularly focusing on its performance in Suzuki coupling, and emphasizes the importance of reliable sourcing from suppliers like NINGBO INNO PHARMCHEM CO.”
Future Pioneer 88
“4-Methoxy-2-methylphenylboronic Acid, known by its CAS number 208399-66-0, is a crystalline white solid that boasts a purity of 97% or higher.”
Core Explorer Pro
“This high purity is fundamental for achieving reproducible results in demanding organic synthesis applications.”