N-Benzyloxycarbonyl-L-alanine N-Hydroxysuccinimide Ester (Z-Ala-OSu): Your Key to Efficient Peptide Synthesis
Discover the pivotal role of Z-Ala-OSu in advancing your peptide synthesis projects. As a leading supplier, we offer high-quality CAS 3401-36-3 for your critical research and development needs.
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Z-Ala-OSu
We are a trusted supplier of Z-Ala-OSu (CAS 3401-36-3), a critical amino acid derivative essential for modern organic synthesis, particularly in the demanding field of peptide synthesis. Its N-hydroxysuccinimide ester group makes it an excellent activating agent for the carboxyl group of alanine, facilitating the formation of stable peptide bonds. As a reliable manufacturer in China, we ensure consistent purity and quality for all our products, enabling researchers and chemists to achieve precise and efficient outcomes.
- Unlock efficient peptide bond formation with our high-purity Z-Ala-OSu, a vital component for successful peptide synthesis.
- Leverage the power of CAS 3401-36-3 to streamline your organic synthesis workflows, ensuring predictable results.
- Explore advanced amino acid derivatives for peptide synthesis to accelerate your groundbreaking research.
- Source your chemical needs from a reputable supplier in China, guaranteeing quality and timely delivery of Z-Ala-OSu.
Advantages Offered
Enhanced Coupling Efficiency
Utilize Z-Ala-OSu to achieve superior coupling efficiency in peptide synthesis, a key factor when aiming for high yields of complex peptide sequences.
High Purity and Consistency
Our commitment to quality ensures that every batch of Z-Ala-OSu meets stringent purity standards, providing reliable performance for your research, a key aspect for amino acid derivatives for peptide synthesis.
Versatile Application in Organic Synthesis
Beyond peptide synthesis, Z-Ala-OSu serves as a valuable building block in various organic transformations, showcasing its versatility as a specialty chemical.
Key Applications
Peptide Synthesis
Z-Ala-OSu is a cornerstone reagent for the formation of peptide bonds, enabling the construction of complex peptides, a crucial area for many peptide synthesis research projects.
Organic Synthesis
Its reactive nature makes it a valuable intermediate in broader organic synthesis, contributing to the development of novel molecules and compounds.
Biochemical Research
As a protected amino acid derivative, Z-Ala-OSu is instrumental in biochemical research requiring precise manipulation of amino acid sequences.
Pharmaceutical Intermediates
The compound plays a role in the synthesis pathway of various pharmaceutical agents, highlighting its importance in drug discovery and development.