The Multifaceted Role of 2-(3-AMINO-PHENYL)-BENZOOXAZOL-5-YLAMINE in Chemical Innovation
Innovation in the chemical sector often hinges on the availability of specialized intermediate compounds. 2-(3-AMINO-PHENYL)-BENZOOXAZOL-5-YLAMINE, bearing the CAS number 13676-47-6, is a prime example of such a compound, demonstrating a multifaceted role in driving chemical advancements. NINGBO INNO PHARMCHEM CO.,LTD. recognizes its importance as a fine chemical intermediate, essential for both materials science and pharmaceutical research.
The compound's primary utility lies in its ability to serve as a monomer for advanced polymers, particularly in the creation of high-performance polyimides. These materials are prized for their exceptional thermal stability, mechanical strength, and optical properties, making them vital in sectors such as advanced electronics and aerospace. The unique aromatic amine and benzoxazole moieties within 2-(3-AMINO-PHENYL)-BENZOOXAZOL-5-YLAMINE provide the structural foundation necessary to achieve these demanding performance characteristics.
Beyond its impact on polymer science, the structural versatility of 2-(3-AMINO-PHENYL)-BENZOOXAZOL-5-YLAMINE also makes it a valuable intermediate in pharmaceutical synthesis. Its framework can be adapted and modified to create novel drug candidates, contributing to the development of new therapeutic solutions. The reliable supply of this high-quality fine chemical, as provided by NINGBO INNO PHARMCHEM CO.,LTD., is instrumental in supporting these diverse and critical research and development efforts across the global chemical landscape.
Perspectives & Insights
Agile Reader One
“The compound's primary utility lies in its ability to serve as a monomer for advanced polymers, particularly in the creation of high-performance polyimides.”
Logic Vision Labs
“These materials are prized for their exceptional thermal stability, mechanical strength, and optical properties, making them vital in sectors such as advanced electronics and aerospace.”
Molecule Origin 88
“The unique aromatic amine and benzoxazole moieties within 2-(3-AMINO-PHENYL)-BENZOOXAZOL-5-YLAMINE provide the structural foundation necessary to achieve these demanding performance characteristics.”