1-Bromo-2-Fluoro-4-Iodobenzene: Your Premier Supplier for Advanced Chemical Synthesis

Discover 1-Bromo-2-Fluoro-4-Iodobenzene (CAS 136434-77-0), a vital intermediate for pharmaceutical and liquid crystal development. As a leading manufacturer and supplier in China, we offer unparalleled purity and consistent quality to meet your R&D and production needs.

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Key Advantages of Sourcing 1-Bromo-2-Fluoro-4-Iodobenzene

Exceptional Purity for Research and Development

Our 1-Bromo-2-Fluoro-4-Iodobenzene boasts a purity exceeding 99.5%, making it an ideal choice for demanding applications in pharmaceutical research and advanced material formulation. This ensures cleaner reactions and higher yields for our clients.

Strategic Halogen Placement for Enhanced Reactivity

The specific arrangement of bromine, fluorine, and iodine on the benzene ring provides distinct reactive sites, enabling selective chemical transformations. This makes it a highly efficient intermediate for complex synthesis pathways, a crucial consideration for procurement managers seeking effective solutions.

Consistent Quality and Scalable Supply

As a dedicated manufacturer, we guarantee the consistent quality of our 1-Bromo-2-Fluoro-4-Iodobenzene. We are equipped to handle orders of varying scales, ensuring a stable supply for both R&D projects and large-scale commercial production. Partner with us for your chemical sourcing needs.

Primary Applications for 1-Bromo-2-Fluoro-4-Iodobenzene

Liquid Crystal Intermediates

This compound is a crucial building block in the synthesis of advanced liquid crystal materials, contributing to their unique optical and electronic properties for display technologies. We are a key supplier for this sector.

Pharmaceutical Intermediate Synthesis

Its multi-functional nature makes it invaluable in the development of novel Active Pharmaceutical Ingredients (APIs). Researchers can buy this intermediate for complex drug discovery programs.

Advanced Organic Synthesis

The compound's distinct halogen groups allow for selective reactions, making it a versatile tool for organic chemists in academia and industry seeking custom synthesis solutions.

Material Science Research

Beyond traditional uses, its structure lends itself to exploration in new material science applications, supporting innovation in various chemical fields.