Unlock Advanced Synthesis with 2-(2-Aminoethyl)-1-methylpyrrolidine
A crucial intermediate for pharmaceutical innovation and complex organic chemistry applications.
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2-(2-Aminoethyl)-1-methylpyrrolidine
This colorless liquid is a vital heterocyclic amine intermediate, serving as a foundational building block in the synthesis of pharmaceuticals and complex organic molecules. Its dual amine functionalities and pyrrolidine ring structure provide unique reactivity for creating novel chemical entities.
- Discover the utility of this 2-(2-aminoethyl)-1-methylpyrrolidine pharmaceutical intermediate in your synthesis projects.
- Leverage the CAS 51387-90-7 chemical synthesis capabilities for efficient molecular construction.
- Utilize this heterocyclic amine building block to create advanced drug candidates.
- Explore the potential of this novel drug development intermediate in your research.
Key Advantages
Versatile Reactivity
The presence of both primary and tertiary amine groups within its structure makes this compound highly reactive, facilitating a broad range of chemical transformations in your organic synthesis.
High Purity Assurance
Achieve reliable and reproducible results in your medicinal chemistry programs with a compound consistently supplied at high purity, exceeding 98%.
Facilitates Innovation
As a crucial organic synthesis reagent, it enables the exploration and development of new chemical entities and advanced pharmaceutical formulations.
Key Applications
Pharmaceutical Development
Serves as a key intermediate in the synthesis of various pharmaceuticals, particularly in the development of drugs targeting complex biological pathways.
Organic Synthesis
A versatile building block for constructing complex molecular architectures, essential for advanced research in chemistry.
Medicinal Chemistry
Used as a structural scaffold for designing novel drug candidates, aiding in the exploration of new therapeutic agents.
Chemical Research
An invaluable reagent for academic and industrial research, enabling breakthroughs in chemical science and material development.