Nombre del producto:2-(3-Methoxyphenyl)azepane

IUPAC Name:2-(3-methoxyphenyl)azepane

CAS:383129-37-1
Fórmula molecular:C13H19NO
Pureza:97%
Número de catálogo:CM286132
Peso molecular:205.3

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CM286132-1g 3-4 Weeks ȡȡǜ

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Detalles del producto

Núm. De CAS :383129-37-1
Fórmula molecular:C13H19NO
Punto de fusión:-
Código de sonrisas:COC1=CC(C2NCCCCC2)=CC=C1
Densidad:
Número de catálogo:CM286132
Peso molecular:205.3
Punto de ebullición:
Nº Mdl:
Almacenamiento:

Category Infos

Azepanes
The use of azepane as a scaffold for drug discovery remains of interest. The azepane linker is the key to efficient activity. A number of seven-membered ring derivatives have been prepared or investigated for their potential or actual pharmacological properties. Examples include azaalkane derivatives as PKB (protein kinase B) inhibitors.

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Product Other Information

Product Overview 2-(3-Methoxyphenyl)azepane is a cyclic organic compound that is used as a building block in the synthesis of various pharmaceuticals and other compounds. It is a versatile and cost-effective starting material for the synthesis of a variety of compounds. The synthesis of 2-(3-Methoxyphenyl)azepane involves the reaction of 3-methoxyphenylboronic acid with ethylenediamine to form an azepane ring structure. 2-(3-Methoxyphenyl)azepane is known to have a variety of applications in the scientific research field, including its use as a model compound for drug design, as a substrate for enzymatic reactions, and as a ligand for binding to proteins.
Physical Properties 2-(3-Methoxyphenyl)azepane is a yellow-brown oil
Chemical Properties 2-(3-Methoxyphenyl)azepane is a reactive compound, often utilized as a starting material or intermediate in various chemical reactions and synthesis processes.
Synthesis and Application 2-(3-Methoxyphenyl)azepane has a variety of applications in the scientific research field. It is used as a model compound for drug design, as a substrate for enzymatic reactions, and as a ligand for binding to proteins. 2-(3-Methoxyphenyl)azepane is also used as a starting material for the synthesis of various pharmaceuticals.