The Chemistry and Applications of (3-Acetamidophenyl)boronic Acid for R&D
For researchers and development scientists, understanding the chemical intricacies and application potential of key intermediates is vital for driving innovation. (3-Acetamidophenyl)boronic Acid, identified by CAS number 101251-09-6, is a prime example of such a compound, offering significant utility in various branches of chemistry, most notably in pharmaceutical research and organic synthesis. Its structure features an acetamide group and a boronic acid moiety attached to a phenyl ring, making it a versatile synthon.
The presence of the boronic acid group (-B(OH)2) makes (3-Acetamidophenyl)boronic Acid an excellent substrate for palladium-catalyzed cross-coupling reactions, such as the Suzuki-Miyaura coupling. This reaction is a powerful tool for forming carbon-carbon bonds, allowing for the construction of complex aromatic systems commonly found in pharmaceuticals and advanced materials. R&D scientists frequently utilize this intermediate to synthesize novel drug candidates, explore structure-activity relationships, and develop new materials with tailored properties. When sourcing this compound for R&D purposes, ensuring high purity, typically 97% minimum, is crucial for obtaining reproducible and accurate experimental results.
The acetamide functional group can also participate in further chemical modifications or serve as a protecting group during synthesis. This dual functionality enhances the compound's versatility. As a leading manufacturer and supplier based in China, we are committed to providing researchers with access to high-quality (3-Acetamidophenyl)boronic Acid. We understand the critical role of reliable intermediates in R&D and strive to meet these demands through stringent quality control and efficient supply chain management. For those looking to buy this compound, our offerings ensure that your research projects have the foundational chemical components they need.
Whether your research focuses on novel pharmaceutical agents, organic electronics, or complex chemical synthesis, (3-Acetamidophenyl)boronic Acid offers a valuable pathway to desired molecular structures. We encourage R&D professionals and procurement specialists to connect with us for inquiries regarding pricing, sample availability, and bulk order requirements. Partnering with a reputable China-based manufacturer like us ensures you receive a premium intermediate that supports the advancement of your scientific endeavors.
Perspectives & Insights
Silicon Analyst 88
“(3-Acetamidophenyl)boronic Acid, identified by CAS number 101251-09-6, is a prime example of such a compound, offering significant utility in various branches of chemistry, most notably in pharmaceutical research and organic synthesis.”
Quantum Seeker Pro
“Its structure features an acetamide group and a boronic acid moiety attached to a phenyl ring, making it a versatile synthon.”
Bio Reader 7
“The presence of the boronic acid group (-B(OH)2) makes (3-Acetamidophenyl)boronic Acid an excellent substrate for palladium-catalyzed cross-coupling reactions, such as the Suzuki-Miyaura coupling.”