Product Name:tert-butyl (S)-(3-methylpyrrolidin-3-yl)carbamate

IUPAC Name:tert-butyl N-[(3S)-3-methylpyrrolidin-3-yl]carbamate

CAS:927652-04-8
Molecular Formula:C10H20N2O2
Purity:95%
Catalog Number:CM197220
Molecular Weight:200.28

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Product Details

CAS NO:927652-04-8
Molecular Formula:C10H20N2O2
Melting Point:-
Smiles Code:O=C(OC(C)(C)C)N[C@]1(C)CNCC1
Density:
Catalog Number:CM197220
Molecular Weight:200.28
Boiling Point:
MDL No:
Storage:Store at 2-8°C.

Category Infos

Pyrrolidines
Pyrrolidine, also known as tetrahydropyrrole, is a saturated five-membered heterocyclic ring, which is miscible with water. Pyrrolidine exists in many alkaloids and drug molecules, such as kappa opioids, antagonists of dopamine D4 receptors, and HIV reverse transcriptase inhibitors.

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Product Other Information

Product Overview (S)-tert-Butyl (3-methylpyrrolidin-3-yl)carbamate, also known as S-tert-butyl MPC, is a chiral molecule that can exist in two enantiomeric forms, and it has been found to possess several interesting properties that make it a valuable tool for researchers.
Synthesis Method The synthesis of (S)-tert-Butyl (3-methylpyrrolidin-3-yl)carbamate MPC can be achieved through several methods, including the reaction of tert-butyl chloroformate with 3-methylpyrrolidine, followed by the addition of ammonium hydroxide. Another method involves the reaction of (S)-tert-Butyl (3-methylpyrrolidin-3-yl)carbamate lactate with 3-methylpyrrolidine in the presence of a base such as sodium hydroxide.
Synthesis and Application It also has a high yield and is relatively easy to synthesize. 
(S)-tert-Butyl (3-methylpyrrolidin-3-yl)carbamate MPC has been used in various scientific research applications, including as a chiral auxiliary in asymmetric synthesis, as a ligand in catalysis, and as a building block in the synthesis of pharmaceuticals. It has also been studied for its potential use in the treatment of diseases such as Alzheimer's and Parkinson's.
Future Directions One area of interest is its potential use in the treatment of neurodegenerative diseases such as Alzheimer's and Parkinson's. It has also been studied for its potential use in catalysis and asymmetric synthesis. Further research is needed to fully understand its mechanism of action and to explore its potential applications in various fields.