Expert Supplier of 2,3,4,5,6-Pentafluoroaniline: High Purity & Reliable Sourcing

Discover the exceptional quality and consistent supply of 2,3,4,5,6-Pentafluoroaniline (CAS: 771-60-8) from leading manufacturers. Ideal for advanced organic synthesis and catalytic applications, our product ensures purity and reliability for your critical research and production needs.

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Key Advantages of Our Pentafluoroaniline

Exceptional Purity & Quality Assurance

Our 2,3,4,5,6-Pentafluoroaniline consistently achieves purity levels of 97% or higher, verified by GC. This commitment to quality ensures predictable performance in your sensitive reactions and applications, making us a preferred supplier for critical research and manufacturing.

Versatile Synthetic Applications

Pentafluoroaniline is invaluable for synthesizing advanced catalysts and complex molecular structures. Whether for esterification, thioesterification, or creating novel metal complexes, its unique fluorinated structure makes it an indispensable component in modern chemical development.

Reliable Supply Chain & Procurement Support

As a dedicated manufacturer and supplier in China, we guarantee a stable and consistent supply of 2,3,4,5,6-Pentafluoroaniline. Our efficient logistics and customer support ensure you can buy with confidence, meeting your production schedules and research timelines.

Core Application Areas for Pentafluoroaniline

Catalyst Development

Utilize Pentafluoroaniline as a precursor to synthesize highly effective catalysts for esterification and thioesterification, driving efficiency in various chemical processes.

Complex Organic Synthesis

As a key building block, it enables the creation of intricate organic molecules, including specialized titanium complexes with tailored properties for advanced materials and pharmaceuticals.

Research & Development

A vital reagent for scientists exploring novel chemical reactions and developing new compounds in academic and industrial R&D settings.

Material Science Precursors

Its fluorinated structure makes it a candidate for developing new functional materials and polymers with unique thermal and chemical resistance properties.