2-Chloro-5-fluoro-3-nitropyridine CAS: 136888-21-6: A Versatile Pharmaceutical Intermediate Supplier

Discover the essential properties and applications of 2-Chloro-5-fluoro-3-nitropyridine, a high-purity organic intermediate crucial for pharmaceutical and agrochemical synthesis. Partner with leading China manufacturers for reliable sourcing and competitive pricing.

Get a Quote & Sample

Key Advantages for Your Chemical Sourcing Needs

Exceptional Purity for Pharmaceutical Applications

Our 2-Chloro-5-fluoro-3-nitropyridine meets rigorous purity standards (≥95%min), ensuring its suitability for demanding pharmaceutical synthesis where impurity control is paramount. Source this vital compound from a trusted manufacturer.

Streamlined Organic Synthesis Processes

The strategic placement of functional groups on the pyridine ring enhances reactivity, allowing for efficient nucleophilic substitution reactions. This intermediate simplifies complex synthetic pathways, offering significant advantages when you buy for your chemical manufacturing needs.

Stable and Reliable Chemical Intermediate

With a stable structure and a melting point between 48.0-52.0 °C, this compound is reliable for storage and use in various chemical processes. Find a dependable supplier in China to guarantee your project's success.

Diverse Applications in Chemical Industries

Pharmaceutical Development

An essential building block for Active Pharmaceutical Ingredients (APIs), particularly in the creation of novel therapeutic agents. Explore its use when searching for pharmaceutical intermediates for sale.

Agrochemical Formulation

Crucial for the synthesis of advanced agrochemicals, including herbicides and pesticides, contributing to enhanced crop protection. Manufacturers seeking reliable intermediates should consider this product.

Fine Chemical Synthesis

Serves as a versatile intermediate in the production of a wide array of fine chemicals, driving innovation in material science and specialty chemical applications.

Organic Synthesis Research

Enables complex multi-step syntheses due to its functional group reactivity, making it valuable for R&D professionals seeking specialized organic chemistry building blocks.