
CAS 1097192-04-5
:(2S)-N-Fmoc-5-Azido- Pentenoic Acid
Description:
(2S)-N-Fmoc-5-Azido-Pentenoic Acid is a chemical compound characterized by its azido functional group and a pentenoic acid backbone. The "Fmoc" (9-fluorenylmethoxycarbonyl) group is a common protecting group used in peptide synthesis, which helps to prevent unwanted reactions during the synthesis process. The presence of the azido group (-N3) introduces unique reactivity, making this compound useful in click chemistry and bioconjugation applications. The stereochemistry indicated by (2S) suggests that the compound has a specific spatial arrangement of atoms, which can influence its biological activity and interaction with other molecules. This compound is typically utilized in research settings, particularly in the fields of organic synthesis and medicinal chemistry, where it can serve as an intermediate for the development of more complex molecules. Its solubility, stability, and reactivity can vary based on the conditions and solvents used, making it essential to consider these factors during experimental procedures.
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Found 6 products.
Fmoc-δ-azido-Nva-OH
CAS:Ornithine-derived building block for “click chemistry” and other reactions involving azides. The azido moiety may also be selectively converted into an amino group with triphenylphosphine in the presence of water (Staudinger reaction).Formula:C20H20N4O4Purity:98.8%Color and Shape:White PowderMolecular weight:380.4(S)-5-Azido-2-(Fmoc-amino)pentanoic acid
CAS:Formula:C20H20N4O4Purity:97%Color and Shape:SolidMolecular weight:380.3972Fmoc-Orn(N3)
CAS:<p>Fmoc-Orn(N3)</p>Formula:C20H20N4O4Purity:>98%Color and Shape: white crystalline powderMolecular weight:380.40g/mol(S)-5-Azido-2-(Fmoc-amino)pentanoic acid
CAS:Formula:C20H20N4O4Purity:≥ 98.5%Color and Shape:White powderMolecular weight:380.40(2S)-5-azido-2-{[(9H-fluoren-9-ylmethoxy)carbonyl]amino}pentanoic acid
CAS:Formula:C20H20N4O4Purity:98%Color and Shape:SolidMolecular weight:380.404Fmoc-Orn(N3)-OH
CAS:<p>Fmoc-Orn(N3)-OH is an organic compound that can be used as a monomer for the fabrication of gold nanoparticles. It has been used in optical techniques such as laser ablation and optical microscopy. Fmoc-Orn(N3)-OH also has affinity for cellular proteins, which means it can be used to detect cells and interact with them. This molecule is endogenous, meaning it naturally occurs in living organisms, such as humans. It is a nature interactor because it may bind to other molecules and affect their functions. Fmoc-Orn(N3)-OH may be modified to enhance its properties, such as its ability to bind to specific proteins or enzymes.</p>Formula:C20H20N4O4Purity:Min. 95%Molecular weight:380.4 g/mol





