Product Name:3,3-difluoro-1-{6-oxa-2-azaspiro[3.4]octan-2-yl}butan-1-one

IUPAC Name:3,3-difluoro-1-{6-oxa-2-azaspiro[3.4]octan-2-yl}butan-1-one

CAS:2212387-78-3
Molecular Formula:C10H15F2NO2
Purity:95%+
Catalog Number:CM1022024
Molecular Weight:219.23

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Product Details

CAS NO:2212387-78-3
Molecular Formula:C10H15F2NO2
Melting Point:-
Smiles Code:CC(F)(F)CC(=O)N1CC2(C1)CCOC2
Density:
Catalog Number:CM1022024
Molecular Weight:219.23
Boiling Point:
MDL No:
Storage:

Category Infos

Spiro Compounds
A spiro compound is a polycyclic compound in which two monocyclic rings share one carbon atom; the shared carbon atom is called a spiro atom. Spiro compounds have rigid structures, stable structures, and have special properties that general organic compounds do not possess, such as anomeric effect, spiro conjugation and spiro hyperconjugation. Compared with the monocyclic structure or the planar aromatic structure, the spiro structure has a larger three-dimensional structure; the heterocyclic spiro structure is also regarded as the biological isostere of some groups, which can change the drug to a certain extent. The water solubility, lipophilicity, dominant conformation and ADMET properties of the molecule make the optimized lead molecule easier to drug. Therefore, spiro compounds occupy a very important position in drug development.
Spiro And Bicyclic Compound
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Fluorinated Compounds
Fluorine is the most electronegative element in the periodic table, and the fluorine atom has a small atomic radius, so fluorine-containing organic compounds have many wonderful properties. For example, the introduction of fluorine atoms or fluorine-containing groups into drug molecules can improve the permeability to cell membranes, metabolic stability and bioavailability; in addition, the introduction of fluorine atoms will improve the lipid solubility of the compound and promote its absorption in the body. The speed of delivery changes the physiological effect. In the field of medicinal chemistry, the introduction of fluorine atoms into organic molecules is an important direction for the development of new anticancer drugs, antitumor drugs, antiviral agents, anti-inflammatory drugs, and central nervous system drugs.
Azetidines
Azetidines are an important class of saturated four-membered nitrogen-containing heterocyclic compounds. The research hotspots related to this structure mainly focus on two aspects: one is the research of pharmaceutical chemistry; the other is related to chiral azetidines, using rigid azetidine compounds as chiral ligands for asymmetric catalytic reactions. Many nitrogen-containing heterocycles play important roles in drug structures, and in many cases small structural changes can improve ligand selectivity and pharmacokinetic properties.
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