2-Fluoropyridine-6-carboxylic Acid: A Key Intermediate for Pharmaceutical and Agrochemical Synthesis | Manufacturer & Supplier

Discover the crucial role of 2-Fluoropyridine-6-carboxylic acid (CAS 402-69-7) as a versatile building block in the synthesis of advanced pharmaceuticals, agrochemicals, and specialty chemicals. As a leading manufacturer and supplier in China, we provide high-purity compounds essential for your R&D and production needs.

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Key Advantages of Sourcing 2-Fluoropyridine-6-carboxylic Acid

Chemical Purity and Consistency

Our 2-Fluoropyridine-6-carboxylic acid is produced to stringent quality standards, ensuring a minimum assay of 98.0%. This consistency is vital for reliable results in complex synthesis pathways, making it a preferred choice for R&D scientists and procurement managers.

Strategic Sourcing from China

Leverage the advantages of sourcing from China, including cost-effectiveness and robust manufacturing capabilities. We provide competitive pricing and efficient logistics for 2-Fluoropyridine-6-carboxylic acid, ensuring a stable supply for your operations.

Broad Application Potential

As a key building block in organic synthesis, this compound is instrumental in developing novel pharmaceuticals and effective agrochemicals. Explore its potential to enhance your product formulations and drive innovation in your sector.

Applications of 2-Fluoropyridine-6-carboxylic Acid

Pharmaceutical Synthesis

A critical intermediate in the synthesis of various pharmaceutical compounds, aiding drug discovery and development by providing fluorinated heterocyclic structures.

Agrochemical Development

Essential for creating new generations of pesticides and herbicides, contributing to enhanced crop protection and agricultural productivity.

Specialty Chemicals

Utilized in the creation of niche chemical products requiring specific fluorinated pyridine moieties for unique properties and applications.

Organic Synthesis Research

A foundational reagent for academic and industrial researchers exploring novel organic transformations and developing complex molecular architectures.