6-Fluoroindole (CAS 399-51-9): A Key Synthesis Intermediate for Pharmaceuticals and Advanced Materials

Discover the extensive applications of 6-Fluoroindole, a vital aromatic heterocyclic compound essential for pharmaceutical development and cutting-edge material science. As a leading manufacturer in China, we provide high-purity 6-Fluoroindole for your research and industrial needs. Get a competitive quote today!

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Why Choose Our 6-Fluoroindole?

Exceptional Purity and Quality

Our 6-Fluoroindole is rigorously tested to meet ≥98% purity standards, ensuring it's a dependable choice for demanding synthesis applications. Partner with a supplier committed to quality assurance.

Critical for Drug Discovery

As a key building block for pharmaceuticals, including those for neurological disorders and cancer, 6-Fluoroindole empowers medicinal chemists and researchers to accelerate their drug discovery programs. Buy in confidence from our expert manufacturers.

Enabling Material Science Innovation

The unique fluorine substitution in 6-Fluoroindole enhances its electronic properties, making it ideal for creating advanced organic semiconductors and materials. Explore innovative solutions with this versatile compound.

Key Applications of 6-Fluoroindole

Pharmaceutical Development

Serve as a vital intermediate in synthesizing active pharmaceutical ingredients (APIs) for neurological disorders and anti-cancer therapies. Researchers frequently buy this compound for structure-activity relationship studies.

Organic Synthesis

A versatile building block in complex organic synthesis, enabling the introduction of fluorine for tailored molecular properties. Secure your supply from a leading manufacturer for consistent results.

Material Science

Utilized in the creation of advanced materials such as organic semiconductors and polymers, offering enhanced electronic properties for innovative devices.

Biochemical Research

Its antimicrobial properties and use in fluorine-labeling for biochemical studies make it valuable for research into quorum sensing and cellular interactions.