Product Name:4-(4-Methoxybenzoyl)isoquinoline

IUPAC Name:4-(4-methoxybenzoyl)isoquinoline

CAS:1187166-11-5
Molecular Formula:C17H13NO2
Purity:97%
Catalog Number:CM259101
Molecular Weight:263.3

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Product Details

CAS NO:1187166-11-5
Molecular Formula:C17H13NO2
Melting Point:-
Smiles Code:O=C(C1=CN=CC2=C1C=CC=C2)C3=CC=C(OC)C=C3
Density:
Catalog Number:CM259101
Molecular Weight:263.3
Boiling Point:
MDL No:MFCD13153011
Storage:

Category Infos

Isoquinolines
Compared to quinolines, isoquinolines are also prominent structural motifs present in many biologically significant natural and synthetic compounds. Some well-known isoquinoline alkaloids include the anticancer and anticonvulsant berberine, the vasodilator and antispasmodic drugs papaverine and emetine. In addition to naturally occurring isoquinolines, synthetic analogs have also shown significant biological activity.

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Product Other Information

Product Overview 4-(4-Methoxybenzoyl)isoquinoline is a chemical compound that belongs to the family of isoquinolines. It is commonly used in scientific research due to its unique properties and potential applications.
Synthesis and Application The synthesis of 4-(4-Methoxybenzoyl)isoquinoline involves the reaction of 4-methoxybenzoyl chloride with isoquinoline in the presence of a base such as triethylamine. The reaction is carried out under reflux conditions in a suitable solvent such as dichloromethane. The product is then purified by column chromatography to obtain pure 4-(4-Methoxybenzoyl)isoquinoline. 4-(4-Methoxybenzoyl)isoquinoline has been extensively used in scientific research due to its potential applications in various fields such as medicinal chemistry, pharmacology, and biochemistry. It has been reported to exhibit cytotoxic, antitumor, and anti-inflammatory activities. It has also been studied for its potential use as a fluorescent probe for biological imaging.
Future Directions There are several potential future directions for the use of 4-(4-Methoxybenzoyl)isoquinoline in scientific research. One direction is to study its potential use as a fluorescent probe for biological imaging. Another direction is to investigate its potential use in the development of new anti-inflammatory drugs. Additionally, further studies can be conducted to explore its potential use in the treatment of neurodegenerative diseases such as Alzheimer's and Parkinson's disease.