Decoding CAS 3401-36-3: Z-Ala-OSu as a Key Intermediate in Organic Synthesis
The world of organic synthesis is built upon a foundation of precise molecular manipulation, and the availability of high-quality chemical intermediates is paramount. Among these crucial compounds is Z-Ala-OSu, identified by its CAS number 3401-36-3. This molecule, formally known as N-Benzyloxycarbonyl-L-alanine N-Hydroxysuccinimide Ester, is far more than just a reagent for peptide synthesis; it serves as a versatile building block with significant applications across various organic chemistry disciplines. NINGBO INNO PHARMCHEM CO.,LTD. is proud to offer this critical intermediate, understanding its broad impact on chemical research and development.
The chemical structure of Z-Ala-OSu (C15H16N2O6) imbues it with specific reactivity that makes it highly valuable. The N-hydroxysuccinimide ester group is a well-known activating group for carboxylic acids, rendering them more reactive towards nucleophiles, particularly amines. This inherent reactivity allows for efficient formation of amide bonds, a fundamental transformation in organic chemistry. The benzyloxycarbonyl (Z) group attached to the alpha-amino nitrogen of alanine provides crucial protection, preventing unintended reactions at this site. This protected, activated form of alanine makes it an ideal starting material for constructing more complex molecules. Researchers often search for 'Z-Ala-OSu applications' to understand its full potential.
While its primary role is in peptide synthesis, where it facilitates the linkage of alanine residues into peptide chains, Z-Ala-OSu also finds utility in other areas of organic synthesis. It can be employed in the synthesis of other amide-containing compounds, modified amino acids, and as a precursor for various heterocyclic structures. The efficiency of coupling reactions achieved with Z-Ala-OSu contributes to improved yields and purity in multi-step syntheses. For those looking to buy Z-Ala-OSu, understanding its broader applications beyond just peptides can unlock new avenues in their research.
The reliable sourcing of chemical intermediates is critical for the success of any synthetic endeavor. NINGBO INNO PHARMCHEM CO.,LTD., as a leading manufacturer in China, ensures that our Z-Ala-OSu is produced to exacting standards. We recognize that the 'price of Z-Ala-OSu' must be balanced with its consistent performance and purity. Our commitment to quality control guarantees that researchers receive a product that performs reliably, whether they are synthesizing peptides or exploring novel synthetic pathways. The search for 'high-quality amino acid derivatives' often leads back to specialized suppliers like ourselves.
The versatility of Z-Ala-OSu underscores the importance of well-characterized and readily available chemical building blocks. As organic chemists continue to push the boundaries of molecular design and synthesis, intermediates like Z-Ala-OSu will remain essential tools. Its ability to introduce a protected alanine moiety into various molecular frameworks makes it invaluable for creating complex organic molecules with diverse functionalities. NINGBO INNO PHARMCHEM CO.,LTD. is dedicated to supporting this innovation by providing access to such key chemical components.
In summary, Z-Ala-OSu (CAS 3401-36-3) is a powerful and versatile intermediate in organic synthesis. Its well-defined reactivity, stemming from the activated ester and protected amine, makes it an ideal reagent for a wide range of transformations, most notably in peptide synthesis. NINGBO INNO PHARMCHEM CO.,LTD. is your trusted partner for sourcing this essential chemical, ensuring the quality and reliability needed to advance your synthetic chemistry projects.
Perspectives & Insights
Core Pioneer 24
“As organic chemists continue to push the boundaries of molecular design and synthesis, intermediates like Z-Ala-OSu will remain essential tools.”
Silicon Explorer X
“Its ability to introduce a protected alanine moiety into various molecular frameworks makes it invaluable for creating complex organic molecules with diverse functionalities.”
Quantum Catalyst AI
“is dedicated to supporting this innovation by providing access to such key chemical components.”