Discover 4-Aminophthalic Acid: A Key Pharmaceutical Intermediate
Explore the essential properties, diverse applications, and synthesis of this vital compound in the pharmaceutical industry.
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4-Aminophthalic Acid
4-Aminophthalic Acid, identified by CAS No: 5434-21-9, is a crucial organic compound extensively utilized as a pharmaceutical intermediate. Its precise chemical structure and properties make it invaluable in the synthesis of various active pharmaceutical ingredients (APIs) and other complex organic molecules. Understanding its characteristics is key for optimizing chemical synthesis and ensuring product quality.
- Explore the key uses of 4-aminophthalic acid in complex organic synthesis processes, leveraging its reactive functional groups to build intricate molecular structures.
- Learn about the 4-aminophthalic acid properties, including its melting point of 344 °C (dec.) and a purity of 99% min, essential for reliable reaction outcomes.
- Investigate the applications of 4-aminophthalic acid in creating advanced materials and novel therapeutic compounds, driving innovation in drug discovery.
- Discover efficient methods for 4-aminophthalic acid synthesis, focusing on yield optimization and impurity control for industrial-scale production.
Advantages Offered
Versatile Synthesis Building Block
As a key component in chemical synthesis, 4-Aminophthalic Acid serves as a versatile building block for a wide array of organic compounds, particularly in the pharmaceutical sector.
High Purity for Critical Applications
With a standard purity of 99% min, this compound is ideal for demanding applications where precision and minimal impurities are paramount, ensuring the integrity of your final products.
Facilitates Drug Discovery and Development
Its role as a pharmaceutical intermediate significantly aids in the R&D phases, enabling the creation of new drug candidates and optimizing existing ones.
Key Applications
Pharmaceutical Intermediates
4-Aminophthalic acid is a vital raw material for synthesizing various pharmaceutical intermediates, contributing to the production of life-saving drugs.
Organic Synthesis
Its chemical structure makes it suitable for diverse organic synthesis reactions, including cyclization, amidation, and esterification.
Research and Development
Researchers utilize 4-aminophthalic acid in laboratories for developing new chemical entities and exploring novel reaction pathways.
Fine Chemical Production
Beyond pharmaceuticals, it finds use in the broader fine chemical industry for creating specialized chemical products.