Nombre del producto:1,4-Dioxaspiro[4.5]decane-2-carbaldehyde

IUPAC Name:1,4-dioxaspiro[4.5]decane-2-carbaldehyde

CAS:92822-62-3
Fórmula molecular:C9H14O3
Pureza:97%
Número de catálogo:CM219076
Peso molecular:170.21

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Detalles del producto

Núm. De CAS :92822-62-3
Fórmula molecular:C9H14O3
Punto de fusión:-
Código de sonrisas:O=CC1OC2(CCCCC2)OC1
Densidad:
Número de catálogo:CM219076
Peso molecular:170.21
Punto de ebullición:
Nº Mdl:
Almacenamiento:

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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Cyclohexanes
Cyclohexane is an organic compound with a chemical formula C6H12. It is a colorless liquid with a pungent odor, insoluble in water, and soluble in most organic solvents such as ethanol, ether, benzene, and acetone. Cyclohexyl fragments are a common structure in both natural and synthetic drugs. It can be used as both core structure and part of achiral side chain.
Dioxolanes
Dioxolane is a heterocyclic acetal with the formula (CH2)2O2CH2. It is related to tetrahydrofuran by exchanging an oxygen for the CH2 group. The isomer 1,2-dioxolane (in which the two oxygen centers are adjacent) is a peroxide. 1,3-Dioxolane is used as solvent and comonomer in polyacetal. The dioxolane-type and their hydrogenolysis can provide very valuable partially protected building blocks either for oligosaccharide syntheses or sugar transformations.