Understanding the Chemistry: 3-Acetyl-5-bromopyridine in Synthesis
The field of organic chemistry is built upon the precise manipulation of molecular structures to create new substances with desired properties. At the core of this endeavor are chemical intermediates – compounds that serve as crucial stepping stones in complex synthetic pathways. 3-Acetyl-5-bromopyridine, identified by its CAS number 38940-62-4, is a pyridine derivative that embodies the utility and importance of such intermediates, finding significant application in fields ranging from pharmaceutical research to materials science.
As a dedicated manufacturer and supplier of fine chemicals, we are committed to providing researchers and industry professionals with access to high-quality, well-characterized intermediates. For those looking to buy 3-acetyl-5-bromopyridine, understanding its chemical characteristics and how they translate into synthetic utility is key. This compound, with its molecular formula C7H6BrNO and molecular weight of 200.03, presents a unique combination of functional groups that make it highly valuable in organic synthesis.
The pyridine ring itself is a fundamental heterocycle found in numerous biologically active molecules. The presence of a bromine atom at the 5-position and an acetyl group at the 3-position on this ring imbues 3-Acetyl-5-bromopyridine with specific reactivity. The bromine atom, being an electronegative substituent, can influence the electron density of the pyridine ring and also serves as an excellent handle for palladium-catalyzed cross-coupling reactions. These reactions are pivotal in modern synthesis for creating complex carbon-carbon bonds, allowing chemists to build sophisticated molecular architectures from simpler precursors.
The acetyl group offers another site for chemical transformation. It can be readily modified through reactions such as reduction to an alcohol, oxidation, or participation in condensation reactions, further expanding the synthetic possibilities offered by this intermediate. This dual functionality makes 3-Acetyl-5-bromopyridine a versatile building block for medicinal chemists designing new drug candidates or for materials scientists developing novel functional materials.
When you consider where to purchase this compound, opting for a reputable supplier in China like ourselves ensures you receive material that meets high purity standards (typically ≥97% Purity by GC/HPLC). This consistency is vital for reproducible experimental results. While exploring the cas 38940-62-4 price, it’s important to remember that the overall value includes not just the cost but also the reliability of the supply chain and the quality assurance provided by the manufacturer.
In summary, 3-Acetyl-5-bromopyridine is a testament to the power of well-designed chemical intermediates in driving scientific progress. Its versatile chemistry makes it an indispensable tool for synthetic chemists. We are dedicated to being a dependable source for this critical compound, supporting your research and development efforts with quality products and exceptional service. We encourage you to inquire about our offerings and explore the possibilities with this valuable building block.
Perspectives & Insights
Core Pioneer 24
“It can be readily modified through reactions such as reduction to an alcohol, oxidation, or participation in condensation reactions, further expanding the synthetic possibilities offered by this intermediate.”
Silicon Explorer X
“This dual functionality makes 3-Acetyl-5-bromopyridine a versatile building block for medicinal chemists designing new drug candidates or for materials scientists developing novel functional materials.”
Quantum Catalyst AI
“When you consider where to purchase this compound, opting for a reputable supplier in China like ourselves ensures you receive material that meets high purity standards (typically ≥97% Purity by GC/HPLC).”