2,6-Dichloronicotinic Acid: A Key Intermediate in Chemical Synthesis
Unlock advanced chemical synthesis with high-purity 2,6-Dichloronicotinic Acid, a vital component for your research.
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2,6-Dichloronicotinic Acid
2,6-Dichloronicotinic acid is an indispensable intermediate in the creation of specialized pyridine derivatives. Its unique chemical structure facilitates its use in the development of inhibitors for critical enzymes, such as human 11β hydroxysteroid dehydrogenase type 1.
- Explore the synthesis of pyridine derivatives for pharmaceutical applications, leveraging the specific properties of 2,6-dichloronicotinic acid.
- Discover how this chemical intermediate is vital for agrochemical production, particularly in herbicides and pesticides.
- Benefit from a product with a minimum purity of 97%, ensuring reliability in your laboratory research and development processes.
- Utilize 2,6-dichloro-3-pyridinecarboxylic acid as a fundamental building block for complex organic synthesis.
Product Advantages
Versatile Synthesis Applications
As a key chemical intermediate, 2,6-Dichloronicotinic Acid is crucial for the preparation of pyridine derivatives, offering broad utility in specialized synthesis pathways.
Agrochemical Innovation
Contribute to agricultural advancements by using this compound in the development of effective herbicides and pesticides, enhancing crop protection strategies.
Pharmaceutical Research Support
Empower your pharmaceutical development with a reliable building block for creating novel therapeutic agents, particularly enzyme inhibitors.
Key Applications
Pharmaceutical Intermediates
Crucial for synthesizing active pharmaceutical ingredients and exploring new therapeutic pathways.
Agrochemical Synthesis
Essential for the production of advanced herbicides and pesticides, supporting crop management.
Organic Synthesis
Acts as a foundational building block for creating complex organic molecules in research settings.
Chemical Research & Development
A reliable reagent for laboratory studies and the development of new chemical entities.