Understanding the Properties and Applications of 3,3'-Oxydianiline (CAS 15268-07-2)
The chemical industry relies on a vast array of fine chemicals to produce the materials and products that shape our modern world. Among these vital compounds is 3,3'-Oxydianiline, identified by its CAS number 15268-07-2. This aromatic diamine is a cornerstone for many advanced applications due to its unique chemical properties. NINGBO INNO PHARMCHEM CO.,LTD. plays a crucial role in making this essential fine chemical accessible to researchers and industries worldwide.
At its core, 3,3'-Oxydianiline is characterized by its molecular formula C12H12N2O and a molecular weight of approximately 200.24 g/mol. It typically presents as a light brown solid, indicating a certain degree of purity and stability under standard conditions. The defining feature of this molecule is the presence of two amino groups attached to a diphenyl ether structure. This configuration makes it highly reactive in polymerization processes, especially for forming polyimides and other high-performance polymers. These polymers are sought after for their superior thermal stability, excellent mechanical strength, and resistance to chemical degradation, making them indispensable in sectors like aerospace, electronics, and automotive manufacturing.
Beyond its utility in polymer science, 3,3'-Oxydianiline finds applications in other chemical sectors. It can act as a curing agent in epoxy resin formulations, contributing to the final material's toughness and durability. Its aromatic amine nature also suggests potential uses in the synthesis of dyes and specialized organic compounds. The consistent demand for materials with enhanced properties fuels the need for reliable suppliers like NINGBO INNO PHARMCHEM CO.,LTD., who ensure the quality and availability of essential fine chemicals such as 3,3'-Oxydianiline. Understanding the properties of this intermediate is key for chemists and material scientists looking to innovate and push the boundaries of what's possible.
At its core, 3,3'-Oxydianiline is characterized by its molecular formula C12H12N2O and a molecular weight of approximately 200.24 g/mol. It typically presents as a light brown solid, indicating a certain degree of purity and stability under standard conditions. The defining feature of this molecule is the presence of two amino groups attached to a diphenyl ether structure. This configuration makes it highly reactive in polymerization processes, especially for forming polyimides and other high-performance polymers. These polymers are sought after for their superior thermal stability, excellent mechanical strength, and resistance to chemical degradation, making them indispensable in sectors like aerospace, electronics, and automotive manufacturing.
Beyond its utility in polymer science, 3,3'-Oxydianiline finds applications in other chemical sectors. It can act as a curing agent in epoxy resin formulations, contributing to the final material's toughness and durability. Its aromatic amine nature also suggests potential uses in the synthesis of dyes and specialized organic compounds. The consistent demand for materials with enhanced properties fuels the need for reliable suppliers like NINGBO INNO PHARMCHEM CO.,LTD., who ensure the quality and availability of essential fine chemicals such as 3,3'-Oxydianiline. Understanding the properties of this intermediate is key for chemists and material scientists looking to innovate and push the boundaries of what's possible.
Perspectives & Insights
Quantum Pioneer 24
“The defining feature of this molecule is the presence of two amino groups attached to a diphenyl ether structure.”
Bio Explorer X
“This configuration makes it highly reactive in polymerization processes, especially for forming polyimides and other high-performance polymers.”
Nano Catalyst AI
“These polymers are sought after for their superior thermal stability, excellent mechanical strength, and resistance to chemical degradation, making them indispensable in sectors like aerospace, electronics, and automotive manufacturing.”