Product Name:Morpholino(3-(pyrrolidin-2-yl)isoxazol-4-yl)methanone

IUPAC Name:4-[3-(pyrrolidin-2-yl)-1,2-oxazole-4-carbonyl]morpholine

CAS:1334494-02-8
Molecular Formula:C12H17N3O3
Purity:97%
Catalog Number:CM494299
Molecular Weight:251.29

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Product Details

CAS NO:1334494-02-8
Molecular Formula:C12H17N3O3
Melting Point:-
Smiles Code:O=C(N1CCOCC1)C2=CON=C2C3NCCC3
Density:
Catalog Number:CM494299
Molecular Weight:251.29
Boiling Point:
MDL No:
Storage:

Category Infos

Morpholines
Morpholine contains secondary amine groups and has all the typical reactive characteristics of secondary amine groups. It can react with inorganic acids to form salts, and react with organic acids to form salts or amides, which can be subjected to alkylation reaction, and can also be reacted with ethylene oxide, ketone or Willgerodt reaction. Morpholine is a six-membered ring containing oxygen and nitrogen, and its alkalinity is much lower than that of its parent piperidine. The marketed morpholine drugs are mainly distributed in the fields of tumors, cardiovascular and cerebrovascular diseases, respiratory system diseases, digestive system diseases, infectious diseases and mental disorders.
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Pyrrolidines
Pyrrolidine, also known as tetrahydropyrrole, is a saturated five-membered heterocyclic ring, which is miscible with water. Pyrrolidine exists in many alkaloids and drug molecules, such as kappa opioids, antagonists of dopamine D4 receptors, and HIV reverse transcriptase inhibitors.
Isoxazoles
Isoxazole is a liquid heterocyclic compound C3H3NO isomeric with oxazole and having a penetrating odor like that of pyridine. Isoxazoles belong to an important class of five-membered aromatic heterocycles containing two electronegative heteroatoms, nitrogen and oxygen, in a 1,2-relationship and three regular sp2 carbon atoms. These molecules are found to be key components in various synthetic products in daily use and also present as a pharmacophore essential for biological activity in many drugs and bioactive natural products. In addition, isoxazoles have demonstrated their ability to exhibit hydrogen bond donor/acceptor interactions with a variety of enzymes and receptors.

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