High-Purity (3S)-1-benzylpyrrolidin-3-amine Dihydrochloride: Your Key Pharmaceutical Intermediate
Discover the critical role of this chiral amine in advancing pharmaceutical research and development.
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(3S)-1-benzylpyrrolidin-3-amine dihydrochloride
As a vital pharmaceutical intermediate, (3S)-1-benzylpyrrolidin-3-amine dihydrochloride (CAS: 131852-54-5) is instrumental in the synthesis of advanced pharmaceutical compounds. Its chiral nature makes it an indispensable building block in medicinal chemistry, particularly for developing treatments targeting central nervous system disorders. Sourcing this high-purity compound is crucial for reliable drug discovery and development pipelines.
- Investigate the potential of chiral amine building blocks for novel drug candidates, leveraging our reliable sourcing for your pharmaceutical intermediate synthesis.
- Explore the benefits of using high-purity (3S)-1-benzylpyrrolidin-3-amine dihydrochloride in your medicinal chemistry projects to ensure consistent results.
- Secure a stable supply chain for essential organic synthesis compounds, ensuring your research and development projects proceed without interruption.
- Understand the chemical properties and applications of this key compound for your pharmaceutical development needs.
Product Advantages
Exceptional Purity
Achieve greater accuracy in your pharmaceutical intermediate synthesis with a product guaranteed to be at least 98% pure, ensuring the integrity of your downstream processes.
Chiral Versatility
Utilize the specific stereochemistry of this chiral amine building block to create enantiomerically pure compounds, critical for targeted drug efficacy and safety.
Enhanced Stability
Benefit from the hydrochloride salt form, which improves solubility and stability, making it easier to handle and incorporate into various reaction conditions for organic synthesis.
Key Applications
Pharmaceutical Synthesis
As a crucial pharmaceutical intermediate, it plays a vital role in synthesizing active pharmaceutical ingredients (APIs) for various therapeutic areas.
Medicinal Chemistry
Its unique chiral structure makes it an ideal building block for developing novel drug candidates, particularly in areas like CNS disorders.
Organic Synthesis
This compound is a valuable reagent in complex organic synthesis, enabling chemists to construct intricate molecular architectures.
Drug Discovery Research
Researchers utilize it to explore new chemical entities and understand their interactions with biological targets.