Product Name:Ethyl 1-(3-aminobenzyl)piperidine-4-carboxylate

IUPAC Name:ethyl 1-[(3-aminophenyl)methyl]piperidine-4-carboxylate

CAS:306937-22-4
Molecular Formula:C15H22N2O2
Purity:97%
Catalog Number:CM516683
Molecular Weight:262.35

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Product Details

CAS NO:306937-22-4
Molecular Formula:C15H22N2O2
Melting Point:-
Smiles Code:O=C(C1CCN(CC2=CC=CC(N)=C2)CC1)OCC
Density:
Catalog Number:CM516683
Molecular Weight:262.35
Boiling Point:
MDL No:MFCD02180894
Storage:

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 Ethyl 1-(3-Aminobenzyl)Piperidine-4-Carboxylate, also known as EAPC, is an organic compound.
Physical Properties It is not very soluble in water, which can make it difficult to use in certain experiments.
Chemical Properties It is relatively easy to obtain and can be synthesized in a relatively short period of time. Additionally, it is relatively stable and can be stored for long periods of time without significant degradation. Furthermore, it is relatively non-toxic and has a relatively low toxicity profile. Additionally, it is relatively expensive and can be difficult to obtain in large quantities. Furthermore, it has a relatively short half-life, which can limit its usefulness in certain experiments.
Synthesis and Application It has been used as a model compound for studying the effects of various drugs on the human body, as well as for studying the effects of various environmental toxins. Additionally, Ethyl 1-(3-Aminobenzyl)Piperidine-4-Carboxylate has been used as a tool for studying the structure and function of enzymes, as well as for studying the structure and dynamics of proteins. Furthermore, Ethyl 1-(3-Aminobenzyl)Piperidine-4-Carboxylate has been used in the synthesis of other compounds, such as pharmaceuticals, and has been found to be useful in the development of new drugs.
Future Directions Further research could be conducted to better understand its mechanism of action and the physiological and biochemical effects it has on the body. Additionally, further research could be conducted to explore its potential applications in the development of new drugs and pharmaceuticals. Furthermore, further research could be conducted to explore its potential applications in the treatment of various diseases and disorders. Finally, further research could be conducted to explore its potential use as an imaging agent for medical diagnostics.