Product Name:3-Acetyl-6-bromo-2H-chromen-2-one

IUPAC Name:3-acetyl-6-bromo-2H-chromen-2-one

CAS:2199-93-1
Molecular Formula:C11H7BrO3
Purity:95%
Catalog Number:CM285191
Molecular Weight:267.08

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Product Details

CAS NO:2199-93-1
Molecular Formula:C11H7BrO3
Melting Point:-
Smiles Code:O=C1C(C(C)=O)=CC2=C(O1)C=CC(Br)=C2
Density:
Catalog Number:CM285191
Molecular Weight:267.08
Boiling Point:
MDL No:MFCD00024075
Storage:

Category Infos

Coumarins
Coumarin occurs naturally in a variety of plants, such as lentils, sweet sawdust, vanilla grass, and sweet grass. Coumarin has a simple structure, benzopyrone, associated with different reaction centers. Coumarins are further subdivided into different classes: simple coumarins, pyranocoumarins, furanocoumarins, dicoumarins and isocoumarins. Coumarin derivatives are an important class of natural plant metabolites with various biological activities. They can also be synthesized artificially, and various synthetic coumarin derivatives (azoles, sulfonyls, furans, pyrazoles, etc.) have shown good anticancer, antitumor and antiproliferative activities. Coumarin derivatives are not only effective anticancer agents, but also possess minimum side effects. Based on different substitution patterns, these potential active substances show a great ability to modulate potential anticancer activities.

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Product Other Information

Product Overview 3-Acetyl-6-bromocoumarin (3A6B) is a synthetic compound with a wide range of applications in scientific research. It is a member of the coumarin family.
Physical Properties It is a colorless, crystalline solid with a sharp, sweet odor.
Chemical Properties 3-Acetyl-6-bromocoumarin is a relatively inexpensive compound, making it an ideal choice for laboratory experiments. In addition, 3-Acetyl-6-bromocoumarin is relatively stable and non-toxic, making it safe to handle and store. However, 3-Acetyl-6-bromocoumarin can be difficult to synthesize and is not always easy to obtain in pure form.
Synthesis and Application It has been used to study the effects of oxidative stress on cells, as well as to study the effects of drugs on the nervous system. 3-Acetyl-6-bromocoumarin has also been used to study the effects of environmental toxins on the body, as well as to study the effects of drugs on the immune system.
Future Directions Potential future directions for 3-Acetyl-6-bromocoumarin include studies on its anti-inflammatory and anti-tumor effects, as well as its potential use in the treatment of neurological disorders. 3-Acetyl-6-bromocoumarin could also be studied for its potential use in the development of new drugs, as well as its potential use in the treatment of infectious diseases. Additionally, further research could be conducted on the biochemical and physiological effects of 3-Acetyl-6-bromocoumarin, as well as its potential toxicological effects.