1-Bromo-4-ethoxy-2,3-difluorobenzene: A Key Intermediate in Advanced Chemical Synthesis

Discover the properties and applications of CAS 156573-09-0, a crucial building block for pharmaceuticals, agrochemicals, and specialty materials. Explore its role in driving innovation in chemical manufacturing.

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Key Advantages

Versatile Reactivity

The strategically placed halogen and fluorine atoms on the benzene ring provide versatile reactivity, enabling various synthetic transformations, crucial for complex organic synthesis.

High Purity and Quality

As a dedicated manufacturer, we ensure a high level of purity for 1-Bromo-4-ethoxy-2,3-difluorobenzene, vital for reproducible results in pharmaceutical intermediate synthesis and research applications.

Facilitates Novel Compound Discovery

Its unique structure makes it an excellent starting material for discovering and developing new organic compounds with potential applications in medicine, agriculture, and materials science.

Key Applications

Pharmaceutical Synthesis

Utilize this difluorobenzene derivative as a critical intermediate in the synthesis of advanced pharmaceutical ingredients, contributing to the development of new therapeutic agents.

Agrochemical Development

The compound's structure lends itself to the creation of novel pesticides and herbicides, supporting advancements in agricultural chemistry.

Specialty Chemical Manufacturing

As a key organic intermediate, it is instrumental in the production of various specialty chemicals used in diverse industrial sectors.

Research and Development

Essential for academic and industrial R&D labs exploring new chemical reactions and compound synthesis, aiding in the advancement of chemical science.