Benzyl N-(2-Hydroxyethyl)carbamate: A Key Pharmaceutical Intermediate for Advanced Synthesis
Discover the essential properties and applications of this vital building block in modern pharmaceutical research.
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2-(Carbobenzoxyamino)-1-ethanol
This high-purity compound, also known as Z-Glycinol, is a critical intermediate in the synthesis of advanced pharmaceuticals. Its molecular structure C10H13NO3 and weight of 195.21500 make it an ideal building block for creating complex organic molecules with specific biological activities, including those used in developing A2A adenosine receptor agonists and inhibitors for cathepsin S. The reliable quality of 2-(Carbobenzoxyamino)-1-ethanol ensures consistent results in demanding research and development projects.
- Leveraging the chemical properties of 2-(carbobenzoxyamino)-1-ethanol purity to achieve high yields in synthesis.
- Understanding the synthesis of alkynylaryladenines and the role of key intermediates like Z-Glycinol.
- Exploring the applications of N-cbz-gly-ol uses in creating novel therapeutic agents.
- Utilizing benzyl n-(2-hydroxyethyl)carbamate pharmaceutical intermediate in drug discovery pipelines.
Key Advantages Offered
High Purity and Reliability
With a purity of ≥98%, this compound guarantees reproducible outcomes in complex organic reactions, crucial for stringent pharmaceutical standards and optimizing benzyl n-(2-hydroxyethyl)carbamate pharmaceutical intermediate applications.
Versatile Synthetic Utility
Its bifunctional nature allows for diverse reactions, making it a key building block for synthesizing a wide range of target molecules, from enzyme inhibitors to receptor agonists, supporting the various benzyl n-(2-hydroxyethyl)carbamate synthesis pathways.
Facilitates Complex Molecule Construction
As a protected amino alcohol, it simplifies the introduction of specific functionalities, accelerating the development of novel drug candidates and advancing research into the synthesis of alkynylaryladenines.
Key Applications
Pharmaceutical Intermediates
Essential for the production of Active Pharmaceutical Ingredients (APIs), this compound is vital for numerous synthesis routes, as explored in research on benzyl n-(2-hydroxyethyl)carbamate chemical applications.
Drug Discovery Research
Used in the synthesis of molecules targeting specific receptors and enzymes, contributing to the development of new therapies for various diseases, highlighting the importance of Z-Glycinol chemical applications.
Organic Synthesis Building Block
Its well-defined chemical structure and reactivity make it a preferred choice for complex organic synthesis, supporting the diverse uses of N-cbz-gly-ol.
Biomedical Research
A crucial component in creating specialized molecules for biological studies and advancements in chemical biology, benefiting from the high 2-(carbobenzoxyamino)-1-ethanol purity.
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