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5-methoxy-1-(4-(trifluoromethyl)phenyl)pentan-1-one oxime

Also known as: Fluvoxamine Impurities or impurities of Fluvoxamine
Chemical Name 5-methoxy-1-(4-(trifluoromethyl)phenyl)pentan-1-one oxime
CAT No. CS-ED-00832
CAS Registry# 61747-22-6
Status Under Certification (Usually dispatched in 5 days)
Category Impurities
Mol. Wt. 275.27 g/mol
Mol. For. C13H16F3NO2
Hazardous This is not a Hazardous Compound
COA View Sample COA

Additional Information


Controlled No
Parent API Fluvoxamine
Smileys FC(C1=CC=C(/C(CCCCOC)=N/O)C=C1)(F)F
Canonical Smiles COCCCCC(=NO)C1=CC=C(C=C1)C(F)(F)F
InchIKey UDCRPPVSQRFBKJ-ATVHPVEESA-N
Inchl InChI=1S/C13H16F3NO2/c1-19-9-3-2-4-12(17-18)10-5-7-11(8-6-10)13(14,15)16/h5-8,18H,2-4,9H2,1H3/b17-12-
IUPAC (NZ)-N-[5-methoxy-1-[4-(trifluoromethyl)phenyl]pentylidene]hydroxylamine
Hazardous No


Usage and description


5-methoxy-1-(4-(trifluoromethyl)phenyl)pentan-1-one oxime is a chemical compound that belongs to the class of oxime derivatives. It is commonly used in the field of medical research and is known for its unique chemical properties. The chemical formula of 5-methoxy-1-(4-(trifluoromethyl)phenyl)pentan-1-one oxime is C13H16F3NO2. The compound is primarily used in research studies to investigate its potential as an inhibitor of certain enzymes in the human body. Specifically, it has been studied for its inhibitory effects on acetylcholinesterase, an enzyme that plays a crucial role in the central nervous system. This enzyme is responsible for breaking down the neurotransmitter acetylcholine, which is essential for the proper functioning of the brain and nervous system. In addition to its potential as an enzyme inhibitor, 5-methoxy-1-(4-(trifluoromethyl)phenyl)pentan-1-one oxime has also been studied for its potential as an anti-inflammatory agent. Its unique chemical structure allows it to bind to specific receptors in the body, which can help reduce inflammation and pain. Overall, 5-methoxy-1-(4-(trifluoromethyl)phenyl)pentan-1-one oxime is a promising compound with a wide range of potential applications in medical research. Its unique chemical properties make it an important tool for investigating the underlying mechanisms of various diseases and developing new treatments.

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