3-Bromo-2-hydroxypyridine: Synthesis, Applications, and Supply for Pharmaceutical and Agrochemical Industries

Discover the critical role of 3-Bromo-2-hydroxypyridine (CAS: 13466-43-8) as a versatile intermediate. Explore its synthesis, chemical properties, and diverse applications in pharmaceutical development and agrochemical research. Learn why sourcing from a reliable manufacturer and supplier in China ensures quality and efficiency for your projects.

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Key Advantages of Our 3-Bromo-2-hydroxypyridine

Exceptional Purity for Critical Syntheses

Our commitment to quality means you receive 3-Bromo-2-hydroxypyridine with purity levels typically exceeding 97% and often reaching 99% by HPLC, ensuring reliable results in your pharmaceutical intermediate synthesis.

Extensive Application Potential

Leverage the reactivity of this heterocyclic building block for developing new drug candidates, optimizing agrochemical formulations, or exploring novel materials. Discover how to buy this compound for your specific research needs.

Direct Manufacturer Support

Benefit from direct sourcing and expert technical support when you purchase from us. As a manufacturer and supplier in China, we provide transparent pricing and responsive service to facilitate your procurement process.

Diverse Applications of 3-Bromo-2-hydroxypyridine

Pharmaceutical Development

Crucial intermediate for synthesizing pharmaceuticals, including γ-secretase modulators and compounds with potential antitumor activity. Explore its use to purchase active pharmaceutical ingredients.

Agrochemical Synthesis

Used in the formulation of agrochemicals, enhancing the efficacy and stability of pesticides and herbicides. A key component for agrochemical research suppliers.

Organic Synthesis Building Block

Its functionalized pyridine structure makes it invaluable for cross-coupling and nucleophilic substitution reactions in complex molecule synthesis.

Materials Science Research

Incorporated into polymers and coatings to impart improved thermal stability and chemical resistance, making it a sought-after material for R&D.