The Role of 2-Acetyl-3-bromothiophene in Modern Organic Synthesis
In the intricate world of organic chemistry, specific molecular building blocks are essential for driving innovation and developing new compounds. Among these crucial intermediates, 2-Acetyl-3-bromothiophene, identified by its CAS number 42877-08-7, stands out for its versatility and utility in a wide range of synthetic applications. As a dedicated manufacturer and supplier, we understand the critical importance of providing high-quality intermediates like this to researchers and industrial chemists worldwide.
2-Acetyl-3-bromothiophene is a halogenated thiophene derivative characterized by its molecular formula C6H5BrOS and a molecular weight of 205.07. Its chemical structure, featuring both an acetyl group and a bromine atom attached to a thiophene ring, makes it an exceptionally useful starting material for numerous chemical transformations. The presence of the bromine atom allows for facile participation in various cross-coupling reactions, such as Suzuki, Stille, and Sonogashira couplings, which are foundational in modern synthetic chemistry for creating complex carbon-carbon bonds.
The typical appearance of 2-Acetyl-3-bromothiophene is a white to brown solid or liquid, with an assay purity of ≥98.0%. This high purity is paramount for chemists who rely on consistent and predictable reaction outcomes, especially in sensitive applications like pharmaceutical synthesis. The melting point typically falls within the range of 38-41°C, and its boiling point is approximately 102-105°C at 4mm pressure, indicating its stability and ease of handling under standard laboratory conditions.
From a commercial perspective, the demand for reliable suppliers of such intermediates is constant. Pharmaceutical companies and research institutions frequently seek to buy 2-Acetyl-3-bromothiophene for their drug discovery pipelines. Its role as an intermediate in the synthesis of potential drug candidates, including those targeting various diseases, underscores its significance. When looking to purchase this chemical, it is crucial to identify a manufacturer that can guarantee both quality and a stable supply chain. Companies often inquire about the price and availability from reputable suppliers in China, recognizing the country's robust chemical manufacturing sector.
Beyond pharmaceuticals, 2-Acetyl-3-bromothiophene also finds applications in the agrochemical industry, contributing to the development of new pesticides and crop protection agents. Its thiophene core can be functionalized to create molecules with specific biological activities. Researchers in material science may also utilize this compound for synthesizing novel polymers or organic electronic materials due to its inherent electronic properties.
For chemists engaged in advanced organic synthesis, having access to key building blocks like 2-Acetyl-3-bromothiophene is non-negotiable. Whether you are exploring new reaction methodologies or scaling up a synthesis for commercial production, partnering with a trusted manufacturer and supplier like us ensures you receive a product that meets your exacting specifications. We encourage you to reach out for a quote or to discuss bulk purchase options for 2-Acetyl-3-bromothiophene (CAS 42877-08-7) to support your ongoing innovation.
Perspectives & Insights
Logic Thinker AI
“The typical appearance of 2-Acetyl-3-bromothiophene is a white to brown solid or liquid, with an assay purity of ≥98.”
Molecule Spark 2025
“This high purity is paramount for chemists who rely on consistent and predictable reaction outcomes, especially in sensitive applications like pharmaceutical synthesis.”
Alpha Pioneer 01
“The melting point typically falls within the range of 38-41°C, and its boiling point is approximately 102-105°C at 4mm pressure, indicating its stability and ease of handling under standard laboratory conditions.”