5-Bromo-2-hydrazinopyridine: Your Reliable Pharmaceutical Intermediate Supplier

Discover the essential building block for your next breakthrough. NINGBO INNO PHARMCHEM CO.,LTD. offers high-purity 5-Bromo-2-hydrazinopyridine, a critical intermediate for pharmaceutical and agrochemical applications. Source with confidence from a leading manufacturer in China.

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Key Advantages of Sourcing from NINGBO INNO PHARMCHEM CO.,LTD.

Exceptional Purity and Quality

Our 5-Bromo-2-hydrazinopyridine meets stringent quality standards, with purity typically u2265 97% (HPLC), ensuring reliable results in your synthetic processes. This commitment to quality makes us a preferred supplier for critical research and manufacturing.

Versatile Synthetic Applications

This compound serves as a critical building block in diverse synthetic routes, enabling the creation of novel heterocyclic compounds. Whether for pharmaceutical development or agrochemical innovation, its versatility is unmatched. Explore how to buy this essential intermediate for your unique applications.

Reliable Global Supply Chain

As a dedicated manufacturer and supplier based in China, we ensure a stable and efficient supply chain for 5-Bromo-2-hydrazinopyridine, catering to global research institutions and chemical companies. Request a quote to secure your supply.

Diverse Applications of 5-Bromo-2-hydrazinopyridine

Pharmaceutical Synthesis

A key intermediate for synthesizing various drug candidates, including those with potential anti-cancer and anti-inflammatory properties. Consult with us to purchase for your medicinal chemistry research.

Agrochemical Development

Essential for creating new herbicides and fungicides, enhancing crop protection. This compound is a valuable asset for agrochemical intermediate sourcing.

Organic Chemistry Research

Serves as a versatile building block for complex organic molecules and heterocyclic structures, facilitating cutting-edge research. Find the best price for your lab needs.

Material Science Exploration

Potential applications in developing novel materials and ligands for coordination chemistry, contributing to advancements in catalysis and material science.