The Chemistry of 3-Nitrophthalimide: Properties and Uses
Understanding the fundamental chemistry of compounds like 3-Nitrophthalimide (CAS: 603-62-3) is vital for researchers and chemists looking to leverage its unique properties. This organic molecule, a derivative of phthalimide, features a nitro group attached to the aromatic ring, significantly influencing its reactivity and potential applications. Chemically, it presents as a yellow to straw-yellow crystalline powder, indicating its solid state at room temperature. Key physical properties, such as a melting point between 213-215°C and a calculated density of 1.5513 g/cm³, provide essential data for handling and processing.
The primary utility of 3-Nitrophthalimide, as documented in various chemical databases and supplier information, lies in its role as a nitro heterocyclic compound exhibiting potential antifungal activities. This characteristic makes it a compound of interest for academic and industrial research aimed at discovering new agents to combat fungal infections. For professionals in this field, the ability to readily purchase 3-Nitrophthalimide from a reliable manufacturer is critical for consistent experimental results. When evaluating potential suppliers, looking for detailed technical specifications and a commitment to quality assurance is advisable.
Furthermore, 3-Nitrophthalimide serves as a valuable intermediate in organic synthesis, particularly in the creation of dyes and other complex organic molecules. Its nitro group can be transformed through various chemical reactions, allowing for further functionalization and the construction of diverse molecular architectures. This makes it an important building block for chemists involved in materials science and specialized chemical production. As a supplier, we understand the need for consistent quality and availability of such intermediates, ensuring that your production or research pipeline remains uninterrupted.
The synthesis of 3-Nitrophthalimide itself typically involves nitration reactions of phthalimide derivatives. For companies looking to secure this compound, sourcing it from established chemical manufacturers, particularly those with a strong presence in China, offers a strategic advantage. These suppliers often possess the expertise and infrastructure to produce high-purity materials efficiently and at competitive prices. Whether you are a research scientist investigating its biological effects or a formulator looking for a unique dye precursor, understanding the chemical profile and sourcing options for 3-Nitrophthalimide is the first step towards successful utilization.
Perspectives & Insights
Quantum Pioneer 24
“Furthermore, 3-Nitrophthalimide serves as a valuable intermediate in organic synthesis, particularly in the creation of dyes and other complex organic molecules.”
Bio Explorer X
“Its nitro group can be transformed through various chemical reactions, allowing for further functionalization and the construction of diverse molecular architectures.”
Nano Catalyst AI
“This makes it an important building block for chemists involved in materials science and specialized chemical production.”