Product Name:3-Bromo-2-iodo-5-methylpyridine

IUPAC Name:3-bromo-2-iodo-5-methylpyridine

CAS:1211542-16-3
Molecular Formula:C6H5BrIN
Purity:97%
Catalog Number:CM488966
Molecular Weight:297.92

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CM488966-1g 1-2 Weeks ƚƐŸ

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Product Details

CAS NO:1211542-16-3
Molecular Formula:C6H5BrIN
Melting Point:-
Smiles Code:CC1=CN=C(I)C(Br)=C1
Density:
Catalog Number:CM488966
Molecular Weight:297.92
Boiling Point:
MDL No:MFCD16610048
Storage:

Category Infos

Pyridines
Pyridine is a six-membered heterocyclic compound containing one nitrogen heteroatom. Pyridine and piperidine are the most frequently occurring heterocyclic building blocks in drug molecules. According to incomplete statistics, there are currently more than 180 drugs containing pyridine or piperidine structure that have been marketed, nearly 1/5 of the drugs approved for marketing in recent years contain these two structures.
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Pyridine is a basic heterocyclic organic compound with the chemical formula C5H5N. It is structurally related to benzene, with one methine group (=CH−) replaced by a nitrogen atom. It is a highly flammable, weakly alkaline, water-miscible liquid with a distinctive, unpleasant fish-like smell.


Product Other Information

Product Overview 3-Bromo-2-iodo-5-methylpyridine (BIMP) is a heterocyclic compound containing a five-membered ring with two nitrogen atoms, one bromine atom, and one iodine atom. 
Physical Properties It is a colorless, volatile liquid with a pungent odor. 
Chemical Properties It is relatively inexpensive and easy to obtain, and it is relatively stable in aqueous solutions. In addition, 3-Bromo-2-iodo-5-methylpyridine is relatively non-toxic and has a low boiling point, which makes it easy to work with in the lab. However, 3-Bromo-2-iodo-5-methylpyridine is relatively volatile, and it can react with other compounds in the presence of heat or light.
Synthesis and Application 3-Bromo-2-iodo-5-methylpyridine has been used in a variety of scientific research applications, including the synthesis of biologically active compounds, the synthesis of polymers, and the study of enzyme-catalyzed reactions. It has also been used in the study of drug-target interactions, the synthesis of new materials, and the study of organic reactions.
Future Directions These include further research into the mechanism of action of 3-Bromo-2-iodo-5-methylpyridine, the development of new synthesis methods, and the development of new uses for 3-Bromo-2-iodo-5-methylpyridine in the pharmaceutical and chemical industries. In addition, further research into the biochemical and physiological effects of 3-Bromo-2-iodo-5-methylpyridine could lead to the development of new drugs and therapies. Finally, further research could be conducted into the use of 3-Bromo-2-iodo-5-methylpyridine as a catalyst for organic reactions, as well as its use in the synthesis of polymers and other materials.