High-Purity 2,4-Difluoro-3-Bromoacetophenone CAS:1210824-63-7: Synthesis, Properties, and Applications

Discover the critical properties and versatile applications of 2,4-difluoro-3-bromoacetophenone, a key intermediate in advanced organic synthesis and pharmaceutical development. Explore its role as a reliable building block for innovative chemical solutions.

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Key Advantages

Exceptional Purity

Our 2,4-difluoro-3-bromoacetophenone boasts a high purity level of 97%, ensuring reliable and reproducible results in your sensitive chemical reactions. This focus on quality is crucial when implementing advanced organic synthesis strategies.

Versatile Reactivity

The presence of bromine and fluorine substituents on the acetophenone core makes this compound a highly versatile intermediate. It is ideal for various coupling reactions and functional group transformations, supporting diverse fine chemical synthesis pathways.

Stable Storage and Handling

Recommended to be stored sealed and dry at room temperature, this compound offers practical handling and storage solutions, minimizing degradation and preserving its integrity for effective use in chemical intermediate applications.

Key Applications

Pharmaceutical Synthesis

As a critical fine chemical intermediate, 2,4-difluoro-3-bromoacetophenone is instrumental in the synthesis of active pharmaceutical ingredients (APIs) and complex drug molecules, contributing to the advancement of new therapies.

Advanced Material Development

This compound serves as a valuable building block in the creation of novel materials, including those for electronics and specialty polymers, where precise molecular structures are paramount.

Research and Development

Its unique chemical structure makes it a sought-after reagent for academic and industrial researchers exploring new reaction methodologies and creating novel organic compounds, supporting the broader field of organic chemistry.

Custom Synthesis Projects

We provide this high-quality intermediate to support custom synthesis projects, enabling chemists to build complex molecular architectures efficiently and effectively.