Therapeutic Uses
Anti-Hyperlipidemics
Storage Condition
Store at refrigerator (2-8°C) for long term storage
Synonyms
(E)-4-(((2-fluorophenyl)imino)methyl)phenol
Application Notes
Useful research chemical for a range of applications
Hazard Compound
Refer MSDS for complete information
4-{(E)-[(2-fluorophenyl)imino]methyl}phenol is a drug product that is used as an analytical standard for HPLC, as well as in research and development of drugs.
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4-{(E)-[(2-fluorophenyl)imino]methyl}phenol usage and description
4-{(E)-[(2-fluorophenyl)imino]methyl}phenol is a chemical compound that is widely used in the pharmaceutical industry. It is a yellow crystalline powder that is soluble in organic solvents such as methanol, ethanol, and chloroform. The molecular formula of this compound is C13H10FNO, and it has a molecular weight of 217.22 g/mol.
The compound has a wide range of applications in the pharmaceutical industry, including its use as an antifungal agent, a treatment for Alzheimer's disease, and a potential anticancer agent. It has been found to exhibit potent antifungal activity against several fungal strains, making it a potential candidate for the development of new antifungal drugs. Additionally, research has shown that the compound has the ability to inhibit the activity of acetylcholinesterase, a key enzyme in the development of Alzheimer's disease, which has led to its investigation as a potential treatment for this condition.
In terms of chemical properties, 4-{(E)-[(2-fluorophenyl)imino]methyl}phenol is a Schiff base that is formed by the condensation of 2-fluorobenzaldehyde with 4-aminophenol. The compound has a melting point of 182-185°C and a boiling point of 400°C. Its structure contains a phenolic hydroxyl group, which makes it susceptible to hydrogen bonding and other types of chemical interactions.
In conclusion, 4-{(E)-[(2-fluorophenyl)imino]methyl}phenol is a valuable compound in the pharmaceutical industry due to its antifungal, Alzheimer's disease treatment, and anticancer properties. Its chemical properties make it a versatile compound with potential for further development and study.