High Purity 4-(Aminomethyl)benzoic Acid CAS 56-91-7: A Versatile Pharmaceutical Intermediate
Discover the critical role of 4-(Aminomethyl)benzoic Acid in advancing pharmaceutical synthesis and chemical innovation.
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4-(Aminomethyl)benzoic Acid
As a high purity chemical intermediate, 4-(Aminomethyl)benzoic Acid (CAS 56-91-7) is instrumental in the synthesis of pharmaceuticals, particularly in the development of analgesics and anti-inflammatory drugs. Its utility extends to being a crucial building block in organic synthesis, enabling the creation of complex molecular structures. This unnatural amino acid derivative also plays a role in polymer chemistry, enhancing material properties like strength and durability, making it a key component for diverse industrial and research applications.
- Leverage the properties of this unnatural amino acid derivative to boost your research. Understanding the specific applications of 4-(Aminomethyl)benzoic Acid CAS 56-91-7 can unlock new avenues in drug development.
- Explore the versatility of this organic synthesis building block for complex molecular structures. The ability to act as a key intermediate for analgesics and anti-inflammatory drugs highlights its pharmaceutical significance.
- Enhance your polymer formulations with this high purity chemical intermediate. Its contribution to polymer properties like strength and durability makes it valuable in the plastics industry.
- Utilize a reliable chemical intermediate for your biochemical research needs. Researchers can employ this compound in various assays, providing insights into metabolic pathways and enzyme activity.
Key Advantages
Exceptional Purity
Ensuring high purity (≥99.0%) for consistent and reliable results in your chemical synthesis applications. This commitment to quality is vital for sensitive pharmaceutical intermediate processes.
Versatile Applications
From pharmaceutical synthesis to polymer chemistry, discover the broad utility of 4-(Aminomethyl)benzoic Acid. Its role as a chemical intermediate for analgesics and anti-inflammatory drugs is well-established.
Facilitates Complex Synthesis
Serve as a fundamental organic synthesis building block, enabling the creation of sophisticated chemical compounds crucial for advanced research and product development.
Key Applications
Pharmaceutical Development
As a key intermediate for analgesics and anti-inflammatory drugs, this compound is vital for advancing pharmaceutical development, supporting the need for high purity pharmaceutical intermediates.
Polymer Chemistry
Enhance material properties such as strength and durability in polymer production. This application highlights its value as a chemical building block for advanced materials.
Biochemical Research
Researchers utilize this compound in biochemical assays and studies, contributing to a deeper understanding of metabolic pathways and enzyme activity. Its role is crucial in chemical industry applications.
Organic Synthesis
Its function as a versatile organic synthesis building block makes it indispensable for creating complex molecular structures in various chemical synthesis projects.