製品名:Methyl trans-6-Methylpiperidine-3-carboxylate Hydrochloride

IUPAC Name:methyl (3R,6R)-6-methylpiperidine-3-carboxylate hydrochloride

CAS番号:1009376-86-6
分子式:C8H16ClNO2
純度:95%
カタログ番号:CM321924
分子量:193.67

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製品詳細

CAS番号:1009376-86-6
分子式:C8H16ClNO2
融点:-
SMILESコード:O=C([C@H]1CN[C@H](C)CC1)OC.[H]Cl
密度:
カタログ番号:CM321924
分子量:193.67
沸点:
MDL番号:MFCD27997461
保管方法:

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 trans-6-Methylpiperidine-3-carboxylate Hydrochloride (MMPCH) is an organic compound that is widely used in the laboratory for a variety of applications. MMPCH is soluble in water, alcohols, and most organic solvents. It is commercially available in its hydrochloride form, and is a highly versatile compound with a wide range of uses in the laboratory.
Physical Properties It is a colorless, crystalline solid with a molecular weight of 181.6 g/mol and a melting point of 114-115 ˚C.
Synthesis and Application Methyl trans-6-Methylpiperidine-3-carboxylate Hydrochloride is most commonly synthesized by a process known as esterification, which involves the reaction of an acid and an alcohol in the presence of a catalyst. The reaction is typically carried out in an anhydrous environment, and the product is purified by recrystallization. Methyl trans-6-Methylpiperidine-3-carboxylate Hydrochloride has a wide range of applications in scientific research. It is used as a catalyst in the synthesis of other compounds, as a reagent in organic synthesis, and as a starting material for the synthesis of pharmaceuticals. It is also used in the analysis of biological samples and in the study of various biochemical processes.
Future Directions Methyl trans-6-Methylpiperidine-3-carboxylate Hydrochloride is a versatile compound with a wide range of applications. In the future, it could be used in the synthesis of other compounds, such as pharmaceuticals and other organic molecules. Additionally, it could be used in the analysis of biological samples, and in the study of biochemical processes. It could also be used in the development of new catalysts and reagents for use in organic synthesis. Finally, it could be used in the development of new methods for the synthesis of other compounds.