2-Bromo-1-(4-morpholinophenyl)ethanone: A Key Intermediate in Pharmaceutical Synthesis

Explore the synthesis, properties, and diverse applications of 2-Bromo-1-(4-morpholinophenyl)ethanone, a crucial building block for advanced pharmaceutical research and development. Discover why leading manufacturers and suppliers choose this compound for innovation.

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Key Advantages for Your Research and Production

Versatile Synthetic Intermediate

The combination of its functional groups allows for a wide array of chemical reactions, making it an invaluable asset for chemists engaged in complex synthesis, especially for pharmaceutical intermediates.

Potential for Drug Discovery

Its reported activity as a protein kinase inhibitor positions it as a significant compound for researchers exploring new therapeutic agents, particularly in areas like cancer treatment. Inquiry for bulk purchase quantities.

High Purity and Quality Assurance

As a dedicated supplier, we ensure that 2-Bromo-1-(4-morpholinophenyl)ethanone meets stringent purity standards (≥98.0% GC), critical for reliable and reproducible results in R&D and manufacturing processes.

Diverse Application Fields

Pharmaceutical Synthesis

Serves as a vital intermediate in the synthesis of complex organic molecules and Active Pharmaceutical Ingredients (APIs), contributing to the drug development pipeline.

Medicinal Chemistry

Its structural features and biological activity make it a compound of interest for developing new therapeutic agents, especially in areas targeting cell cycle regulation.

Organic Synthesis Research

The presence of the α-bromoketone moiety makes it a reactive building block for various organic transformations and synthetic strategies, readily available from our supplier network.

Oncology Research

Its potential as a protein kinase inhibitor highlights its significance in research aimed at understanding and treating cancer, offering a valuable chemical tool for scientists.