High-Purity (2R)-2-Methylpyrrolidine-1,2-dicarboxylic Acid 1-(1,1-Dimethylethyl) Ester for Advanced Chemical Synthesis
Unlock advanced synthesis with our premium (2R)-2-methylpyrrolidine-1,2-dicarboxylic acid derivative. Essential for cutting-edge research.
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2-Methylpyrrolidine-1,2-dicarboxylic acid 1-(1,1-dimethylethyl) ester (2R)
This high-purity white powder is a critical component in the development of advanced pharmaceuticals and cosmetic formulations. Its specific chiral structure makes it invaluable for targeted synthesis.
- Discover the high purity (98%) of this chemical intermediate, crucial for reliable synthesis and research outcomes.
- Leverage its white powder appearance, indicating a refined product suitable for sensitive applications.
- Explore its versatility as it is widely used in both cosmetics and medicine, showcasing broad applicability.
- Incorporate this essential pharmaceutical intermediate into your workflow to ensure the quality and efficacy of your end products.
Key Advantages Provided
Chiral Purity
The specific (2R) stereochemistry of this chiral pyrrolidine derivative is vital for stereoselective synthesis, leading to higher efficacy and reduced side effects in target molecules.
Synthesis Versatility
Utilize this compound as a key building block in complex organic synthesis, supporting the creation of novel molecules for various industries.
Quality Assurance
Benefit from the consistently high purity and well-defined specifications, ensuring predictable performance in your research and development processes.
Key Applications
Cosmetic Formulations
Its use in cosmetic ingredients contributes to the efficacy and safety profiles of various skincare and beauty products.
Pharmaceutical Intermediates
As a vital pharmaceutical intermediate, it plays a key role in the synthesis of active pharmaceutical ingredients (APIs).
Diagnostic Reagents
This compound is utilized in the manufacturing of diagnostic reagents, supporting accurate and reliable medical testing.
Organic Synthesis
Its well-defined chemical structure makes it a valuable tool for organic chemists in academic and industrial research settings.