Discover 6-Amino-2-methylphenol (CAS 17672-22-9)
Your essential guide to a versatile chemical intermediate with broad industrial and pharmaceutical applications.
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6-Amino-2-methylphenol
This high-purity 6-Amino-2-methylphenol, identified by CAS 17672-22-9, is a critical chemical compound with a molecular formula of C7H9NO. It is recognized for its utility in various synthetic processes, serving as a key building block in both pharmaceutical development and industrial chemical applications. Its purity standard of 99.0%min ensures reliable performance in demanding chemical reactions.
- Leverage its properties as a pharmaceutical intermediate to accelerate drug discovery.
- Utilize high purity 6-amino-2-methylphenol for consistent results in your organic synthesis projects.
- Explore the benefits of sourcing 6-amino-2-methylphenol from reliable China manufacturers for your industrial chemical needs.
- Understand the critical role of 6-amino-2-methylphenol in various chemical manufacturing processes.
Advantages Offered
Exceptional Purity
With an assay of 99.0%min, this compound guarantees high performance and reliability, crucial for demanding applications such as pharmaceutical intermediate synthesis.
Versatile Applications
Serving as a valuable building block, it finds wide use in pharmaceuticals, fine chemicals, and other industrial sectors, supporting diverse chemical manufacturing.
Quality Assurance
Backed by GMP and SGS certifications, alongside USP, BP, EP, and FCC standards, you can trust the quality and compliance of this essential chemical.
Key Applications
Pharmaceutical Synthesis
As a pharmaceutical intermediate, it plays a vital role in the complex synthesis pathways for various drug compounds. Explore where to buy 6-amino-2-methylphenol online for your research and development.
Industrial Fine Chemicals
Its versatile nature makes it a key component in the production of a wide array of industrial and fine chemicals, contributing to diverse manufacturing sectors.
Organic Synthesis
The presence of amino and phenolic groups makes it highly reactive and suitable for various organic synthesis reactions, essential for creating novel compounds.
Chemical Research & Development
Researchers and chemists utilize this compound for developing new materials and processes, underscoring its importance in chemical research and development.