Product Name:6,6'-dichloro-2,2'-bipyridine

IUPAC Name:6,6'-dichloro-2,2'-bipyridine

CAS:53344-72-2
Molecular Formula:C10H6Cl2N2
Purity:95%
Catalog Number:CM133591
Molecular Weight:225.07

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Product Details

CAS NO:53344-72-2
Molecular Formula:C10H6Cl2N2
Melting Point:-
Smiles Code:ClC1=CC=CC(C2=NC(Cl)=CC=C2)=N1
Density:
Catalog Number:CM133591
Molecular Weight:225.07
Boiling Point:354.681°C at 760 mmHg
MDL No:MFCD11042483
Storage:Store at 2-8°C.

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.
Pyridine | C5H5N | Pyridine Supplier/Distributor/Manufacturer - Chemenu
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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.

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Product Other Information

Product Overview 6,6'-Dichloro-2,2'-bipyridine (DCBP) is an important organic compound used in laboratory experiments and scientific research applications. It is a heterocyclic compound.
Physical Properties DCBP is a colorless and crystalline solid, which is soluble in organic solvents and water.
Chemical Properties It is a stable compound and is relatively easy to synthesize.  It is also important to note that 6,6'-Dichloro-2,2'-bipyridine is a toxic compound, and great care should be taken when handling it.
Synthesis and Application It is used in the synthesis of chiral compounds, such as drugs, pesticides, and fragrances, as well as in the synthesis of polymers and other materials. It is also used in the synthesis of organobromides and as a catalyst for the synthesis of a variety of organic compounds. In addition, (R)-2-bromobutanoic acid is used in the synthesis of optical isomers and as a precursor for the synthesis of a variety of pharmaceuticals and other compounds.
Future Directions Future research on (R)-2-bromobutanoic acid should focus on its biochemical and physiological effects, its potential therapeutic applications, and its potential toxicity. In addition, further research should be conducted to better understand the mechanism of action of the acid and to develop new synthetic methods for its synthesis. Finally, research should be conducted to develop new methods for the separation and purification of (R)-2-bromobutanoic acid.