Nombre del producto:5-((3aR,6S,6aS)-2-amino-3a,4,6,6a-tetrahydro-1H-thieno[3,4-d]imidazol-6-yl)pentanoic acid

IUPAC Name:5-[(3aR,6S,6aS)-2-amino-1H,3aH,4H,6H,6aH-thieno[3,4-d]imidazol-6-yl]pentanoic acid

CAS:13395-35-2
Fórmula molecular:C10H17N3O2S
Pureza:97%
Número de catálogo:CM187037
Peso molecular:243.33

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CM187037-25mg in stock ľƿǪ

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Detalles del producto

Núm. De CAS :13395-35-2
Fórmula molecular:C10H17N3O2S
Punto de fusión:-
Código de sonrisas:O=C(O)CCCC[C@@H]1SC[C@@]2([H])[C@]1([H])NC(N)=N2
Densidad:
Número de catálogo:CM187037
Peso molecular:243.33
Punto de ebullición:
Nº Mdl:
Almacenamiento:

Category Infos

Imidazolidines
Imidazolidine is a heterocyclic compound (CH2)2(NH)2CH2. The parental imidazolidines are less studied, but related compounds substituted on one or both nitrogen centers are more common. Generally, they are colorless, polar, basic compounds. Imidazolidines are examples of cyclic 5-membered general amines. Imidazolidine derivatives are key components in the development of bioactive compounds for the treatment of various diseases, especially Chagas disease. In fact, other studies have shown that imidazoline-2,4-diones have a wide range of pharmacological activities, including anticonvulsant, antiarrhythmic, and antiparasitic.
imidazolidine supplier
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Imidazolines
Imidazolines are a class of heterocycles derived from imidazoles by reduction of one of the two double bonds. Three isomers are known, 2-imidazoline, 3-imidazoline and 4-imidazoline. 2 and 3-imidazolines contain imine centers, while 4-imidazolines contain alkene groups. The 2-imidazoline group occurs in several drugs. Imidazolines are an important class of compounds found in many natural and medicinal products. These compounds are also used as intermediates in the synthesis of organic molecules. Furthermore, chiral imidazolines are widely used as organic catalysts for the synthesis of various natural and synthetic organic compounds.
Tetrahydrothiophenes
Tetrahydrothiophene is a sulfur-containing saturated heterocyclic compound obtained by catalytic hydrogenation of thiophene. After thiophene is reduced to tetrahydrothiophene, it no longer has a conjugated system and aromaticity. Therefore, tetrahydrothiophene shows the properties of general thioethers. Easily oxidized to sulfoxides and sulfones. Tetrahydrothiophene can be used as a raw material for the production of pharmaceuticals, pesticides and photochemicals.

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