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5-Fluoro-1-indanone CAS:700-84-5

5-Fluoro-1-indanone is a fluorinated heterocyclic compound with the molecular formula C9H7FO. It features a bicyclic structure that includes both an aromatic indole and a ketone functional group, making it a valuable intermediate in organic synthesis. The presence of a fluorine atom at the fifth position of the indanone ring imparts unique electronic properties, enhancing its reactivity and biological activity. This compound has garnered attention for its potential applications in medicinal chemistry, particularly as a scaffold for the development of pharmaceuticals targeting various diseases, including cancer and neurological disorders.


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Application and Effect:

5-Fluoro-1-indanone is an intriguing compound that belongs to the class of fluorinated indanones, characterized by its molecular formula C9H7FO. The structure comprises a fused bicyclic system, where a ketone functional group is attached to the indanone moiety, and a fluorine atom is positioned at the 5th carbon of the indanone ring. The incorporation of the fluorine atom significantly alters the chemical properties of the molecule, influencing its polarity, lipophilicity, and overall bioavailability. One of the primary interests in 5-fluoro-1-indanone stems from its potential applications in medicinal chemistry. The introduction of fluorine in organic compounds often enhances their pharmacological properties, including metabolic stability and binding affinity to biological targets. As such, 5-fluoro-1-indanone has been explored as a building block for designing novel therapeutic agents, particularly in the fields of oncology and neurology. Compounds derived from this indanone have shown promising results in preclinical studies, indicating possible anticancer and neuroprotective activities. In addition to its biological relevance, 5-fluoro-1-indanone serves as a versatile intermediate in organic synthesis. Its structural features enable it to participate in various chemical reactions, including nucleophilic substitutions, cyclizations, and functional group transformations. These processes are essential for developing complex molecules with desirable properties, expanding its utility in drug discovery. Moreover, the unique characteristics of 5-fluoro-1-indanone make it a subject of interest in materials science. Its derivatives can be investigated for applications in organic electronics, photovoltaic cells, and other advanced materials. Overall, the combination of its distinctive structure and potential biological activities underscores the importance of 5-fluoro-1-indanone in contemporary research, warranting further exploration into its applications in pharmaceuticals and materials science. Continued investigation into its properties and derivatives may yield significant advancements in multiple scientific disciplines.

Product Sample:

L-Arginine1
L-Arginine2

Product Packing:

L-Arginin3

Additional Information:

Composition C7H6N2
Assay 99%
Appearance white powder
CAS No.  700-84-5
Packing Small and bulk
Shelf Life 2 years
Storage Store in cool and dry area
Certification ISO.

 


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