1-(2-Fluoro-5-nitrophenyl)ethan-1-one: A Versatile Organic Intermediate
Explore the synthesis, properties, and applications of this key building block in organic chemistry.
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1-(2-Fluoro-5-nitrophenyl)ethan-1-one
This compound serves as a critical organic intermediate, widely utilized in laboratory research and development and in broader chemical production processes. Its unique structure, featuring both fluorine and nitro substituents on an acetophenone backbone, makes it a valuable precursor for synthesizing more complex molecules.
- Understanding the 1-(2-Fluoro-5-nitrophenyl)ethan-1-one synthesis is crucial for optimizing production yields and purity in fine chemical manufacturing.
- Leveraging its properties as a pharmaceutical intermediate 79110-05-7 enables the development of novel therapeutic agents.
- The efficient use of this compound as a fine chemical synthesis building block underpins advancements in material science and specialty chemical development.
- Exploring the various 1-(2-Fluoro-5-nitrophenyl)ethan-1-one properties allows researchers to tailor its application to specific synthetic challenges.
Advantages It Brings
Versatile Reactivity
The presence of the ketone, fluoro, and nitro groups provides multiple reaction sites, making it an adaptable building block for diverse synthetic pathways in organic synthesis.
Enabling Complex Synthesis
As a key CAS 79110-05-7 organic intermediate, it facilitates the construction of complex molecular architectures essential for cutting-edge research.
Quality Assurance
Ensuring high purity and consistent quality is paramount when using this compound for critical applications in pharmaceutical intermediate development.
Key Applications
Organic Synthesis
Facilitates the creation of novel organic compounds through various synthetic transformations, vital for fine chemical synthesis building block requirements.
Pharmaceutical Intermediate
Serves as a crucial precursor in the synthesis of active pharmaceutical ingredients (APIs) and other drug-related molecules, highlighting its role as pharmaceutical intermediate 79110-05-7.
Laboratory Research & Development
Indispensable for academic and industrial R&D, enabling the exploration of new chemical reactions and the development of innovative materials.
Material Science
Its unique chemical structure can contribute to the development of new functional materials, aligning with its utility as a specialty chemical.
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