7-Bromo-8-methylquinoline (CAS 809248-61-1): Your Key Pharmaceutical Intermediate
Discover the essential properties and applications of this vital building block for advanced chemical synthesis.
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7-Bromo-8-methylquinoline
As a crucial pharmaceutical intermediate, 7-Bromo-8-methylquinoline serves as a fundamental building block in the synthesis of complex organic molecules and advanced pharmaceutical compounds. Its precise chemical structure and high purity make it indispensable for drug discovery and development.
- Explore the synthesis of 7-Bromo-8-methylquinoline to understand its importance in creating new therapeutic agents.
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- Understand the detailed chemical properties of 7-Bromo-8-methylquinoline for optimizing synthesis pathways.
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Advantages Offered
Exceptional Purity
With a minimum purity of 99%, this compound ensures reproducible results in complex organic synthesis, a key factor when researching 7-Bromo-8-methylquinoline CAS 809248-61-1 manufacturers.
Defined Physical Properties
The pale beige solid form and a specific melting point range (47-48.5 °C) facilitate easy handling and accurate formulation in various chemical processes.
Versatile Building Block
Its unique structure makes it an invaluable intermediate for creating a wide array of heterocyclic compounds, supporting your efforts to buy 7-Bromo-8-methylquinoline for novel applications.
Key Applications
Pharmaceutical Synthesis
Essential for the development of new drug candidates, this intermediate is central to many pharmaceutical synthesis pathways, driving innovation in health sciences.
Organic Synthesis
A versatile compound used in various organic chemistry research, aiding in the creation of diverse molecular structures and the study of chemical reactions.
Research Chemicals
Widely utilized in academic and industrial research laboratories, supporting advancements in medicinal chemistry and material science.
Heterocyclic Chemistry
A key component in the study and synthesis of heterocyclic compounds, contributing to the understanding of their properties and potential applications.