Product Name:4-(5-Tetrazolyl)pyridine

IUPAC Name:4-(1H-1,2,3,4-tetrazol-5-yl)pyridine

CAS:14389-12-9
Molecular Formula:C6H5N5
Purity:95%+
Catalog Number:CM386781
Molecular Weight:147.14

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Product Details

CAS NO:14389-12-9
Molecular Formula:C6H5N5
Melting Point:-
Smiles Code:N1N=NN=C1C1=CC=NC=C1
Density:
Catalog Number:CM386781
Molecular Weight:147.14
Boiling Point:
MDL No:
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.
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.
Tetrazoles
Tetrazoles are doubly unsaturated five-membered aromatic heterocycles consisting of one carbon atom and four nitrogen atoms. Tetrazole derivatives are a major class of heterocyclic compounds that are important for medicinal chemistry and drug design because of their not only isosteric properties with carboxylic acid and amide moieties, but also metabolic stability and other beneficial physicochemical properties.

Product Other Information

Product Overview 5-(4-Pyridyl)-1H-Tetrazole (5-PYT) is an organic compound belonging to the class of tetrazoles.
Physical Properties It is a colorless, crystalline solid.
Chemical Properties (4-Pyridyl)-1H-Tetrazole is relatively stable and can be stored for extended periods of time. It has low cost, ease of synthesis, and wide availability.
Synthesis and Application It has been used in the synthesis of various compounds, including pharmaceuticals, agrochemicals, and polymers. Additionally, 5-(4-Pyridyl)-1H-Tetrazole has been studied for its potential as a biochemical and physiological modulator.
Future Directions Further research is needed to better understand the biochemical and physiological effects of 5-(4-Pyridyl)-1H-Tetrazole and its potential as a drug modulator. Additionally, further research is needed to develop methods for the selective inhibition of CYP2D6 and other enzymes. Finally, 5-(4-Pyridyl)-1H-Tetrazole could be used as a starting material for the synthesis of other compounds, such as pharmaceuticals, agrochemicals, and polymers.