Nε-Carbobenzoxy-L-lysine N-Carboxyanhydride: Key to Advanced Polylysine Synthesis
Discover the chemical cornerstone for creating innovative synthetic, basic poly-α-amino acids with superior properties.
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Nε-Carbobenzoxy-L-lysine N-Carboxyanhydride
This high-purity L-lysine derivative is instrumental in the preparation of Polylysine, a critical component in developing advanced biomaterials and synthetic polymers. Its precise chemical structure and guaranteed purity make it an ideal building block for researchers and manufacturers aiming for consistent and high-performance outcomes in polymer synthesis.
- Facilitates the precise synthesis of Polylysine, a versatile synthetic basic poly-α-amino acid.
- Offers high purity (≥98%), ensuring reliable results in complex chemical reactions.
- Requires specific storage conditions (-0ºC) to maintain its chemical integrity and efficacy.
- Presented as a fine White to off-white powder, suitable for various laboratory and industrial applications.
Advantages You Gain
Enhanced Polymer Properties
Leverage the unique structure of Nε-Carbobenzoxy-L-lysine N-Carboxyanhydride to develop Polylysine with tailored properties, supporting your innovative polymer synthesis goals.
Reliable Chemical Purity
Achieve consistent and reproducible results in your research and development thanks to the guaranteed high purity of this essential chemical intermediate.
Versatile Applications
Explore the broad applications of this lysine derivative in creating novel biomaterials and functional polymers, driving forward advancements in material science.
Key Applications
Polylysine Preparation
A primary application is its use as a precursor for the synthesis of Polylysine, essential for creating synthetic, basic poly-α-amino acids.
Advanced Polymer Synthesis
This compound serves as a critical intermediate in the development of novel polymers with specific functionalities and applications.
Biomaterial Development
Researchers utilize this derivative to engineer advanced biomaterials that mimic natural biological structures and functions.
Peptide Chemistry Research
Its well-defined structure makes it valuable in peptide chemistry for studying amino acid linkages and synthetic polypeptide chain extensions.