Nombre del producto:methyl 1-benzyl-1,2,3,6-tetrahydropyridine-4-carboxylate

IUPAC Name:methyl 1-benzyl-1,2,3,6-tetrahydropyridine-4-carboxylate

CAS:80845-58-5
Fórmula molecular:C14H17NO2
Pureza:98%
Número de catálogo:CM171012
Peso molecular:231.3

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Detalles del producto

Núm. De CAS :80845-58-5
Fórmula molecular:C14H17NO2
Punto de fusión:-
Código de sonrisas:O=C(C1=CCN(CC2=CC=CC=C2)CC1)OC
Densidad:
Número de catálogo:CM171012
Peso molecular:231.3
Punto de ebullición:
Nº Mdl:
Almacenamiento:Store at 2-8°C.

Category Infos

Piperidines
Piperidine is an azacycloalkane that is cyclohexane in which one of the carbons is replaced by a nitrogen. Although piperidine is a common organic compound, it is an immensely important class of compounds medicinally: the piperidine ring is the most common heterocyclic subunit among FDA approved drugs.
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Product Other Information

Product Overview Methyl 1-benzyl-1,2,3,6-tetrahydropyridine-4-carboxylate (Methyl 1-BTHPC) is a synthetic compound that has recently been studied for its potential applications in the field of science and medicine. It is a small molecule that has the ability to interact with various proteins, enzymes, and other molecules in the body. 
Synthesis Method Methyl 1-BTHPC is synthesized from the reaction of 1-benzyl-1,2,3,6-tetrahydropyridine-4-carboxylic acid and methyl iodide. The reaction is conducted in a solvent such as toluene or dichloromethane and is followed by the addition of a base such as sodium hydroxide or potassium carbonate. The reaction proceeds in a two-step process, first forming the methyl ester, followed by the formation of the desired product. 
Chemical Properties It is relatively easy to synthesize and is relatively stable in solution. It is relatively non-toxic and has few side effects.
Synthesis and Application It has been used to study the effects of various drugs on the body, as well as their interactions with other molecules. It has also been studied for its potential use as a therapeutic agent for various diseases. In addition, it has been used to study the structure and function of proteins, enzymes, and other molecules.
Future Directions These include the development of new therapeutic agents for various diseases, the use of the compound for drug delivery, and the study of its interactions with other molecules. Additionally, further research could be conducted to better understand its biochemical and physiological effects, as well as its potential applications in the field of medicine. Finally, further research could be conducted to explore new methods for synthesizing the compound, as well as new methods for using it in laboratory experiments.