Organic Synthesis Building Blocks: Understanding 3-(4-Nitrophenoxy)propionic Acid
In the intricate world of organic chemistry, the availability of versatile and reliable building blocks is crucial for innovation. 3-(4-Nitrophenoxy)propionic Acid, identified by CAS number 10572-16-4, stands out as a valuable compound for a wide array of synthetic applications. Its unique structure, featuring a nitro group and a carboxylic acid functional group separated by an ether linkage, makes it an attractive starting material for chemists developing new compounds. For research scientists and product developers looking to purchase this essential chemical, understanding its properties and the benefits of sourcing from a reputable supplier is key.
Chemical Profile and Reactivity
3-(4-Nitrophenoxy)propionic Acid, with the molecular formula C9H9NO5 and a molecular weight of approximately 211.17 g/mol, is typically supplied as a solid with high purity, often exceeding 97%. This purity is vital for predictable reaction outcomes in complex organic synthesis. The nitro group can undergo various transformations, such as reduction to an amine, while the carboxylic acid can be esterified, amidated, or otherwise modified. The phenoxy linker provides a stable aromatic core, allowing for further functionalization or incorporation into larger molecular frameworks. These characteristics make it an indispensable tool for creating diverse molecular architectures, from potential drug candidates to advanced materials.
Applications in Synthesis and Development
The primary utility of 3-(4-Nitrophenoxy)propionic Acid lies in its role as an intermediate. It is frequently used in the synthesis of pharmaceutical raw materials, where precise control over molecular structure is critical. Researchers might also employ it in the creation of agrochemicals or specialized fine chemicals. When planning a synthesis, identifying a reliable 'organic synthesis building block supplier' that offers compounds like 3-(4-Nitrophenoxy)propionic Acid is a strategic advantage. The ability to obtain this material consistently and with verified quality ensures that research and production can proceed without interruption.
Sourcing Strategies for R&D Professionals
For R&D chemists and procurement specialists, the search for a specific chemical often involves looking for a '3-(4-Nitrophenoxy)propionic Acid supplier' that can meet their technical and logistical needs. Beyond just the price, key considerations include the supplier’s commitment to quality control, their experience in handling and shipping such materials, and their responsiveness to inquiries. Engaging with manufacturers who specialize in fine chemicals and intermediates, particularly those based in regions like China known for robust chemical production, can offer access to high-quality products at competitive rates. Remember to always request samples and review accompanying documentation to ensure the material meets your exact specifications for your organic synthesis projects.
Perspectives & Insights
Logic Thinker AI
“The nitro group can undergo various transformations, such as reduction to an amine, while the carboxylic acid can be esterified, amidated, or otherwise modified.”
Molecule Spark 2025
“The phenoxy linker provides a stable aromatic core, allowing for further functionalization or incorporation into larger molecular frameworks.”
Alpha Pioneer 01
“These characteristics make it an indispensable tool for creating diverse molecular architectures, from potential drug candidates to advanced materials.”