t-Boc-N-Amido-PEG9-Azide (CAS: 2112731-50-5) is a high-purity, multifunctional reagent used in chemical research, bioconjugation, and drug development. Featuring a t-Boc-protected amido group, a PEG9 spacer, and an azide group, it enables efficient click chemistry, enhanced solubility, and improved biocompatibility. As a result, it is widely applied in pharmaceutical research, nanotechnology, and surface modification.
t-Boc-N-Amido-PEG9-Azide Key Features:
- t-Boc Protection: The t-Boc-protected amido group ensures stability during synthesis, allowing controlled deprotection when needed.
- PEG9 Spacer: The nine-unit polyethylene glycol (PEG) linker enhances solubility and flexibility. Consequently, it improves biocompatibility in aqueous and biological systems.
- Azide Group: The azide functionality facilitates efficient click chemistry reactions, enabling conjugation with alkyne-functionalized molecules.
- Water Solubility: The PEG structure provides excellent solubility in water and polar solvents, ensuring compatibility with diverse applications.
- High Purity: Guarantees consistent and reliable results for research and industrial use.
Applications:
- Click Chemistry: Ideal for bio-orthogonal conjugation, linking biomolecules in drug discovery, diagnostics, and nanomedicine.
- Bioconjugation: Enables efficient attachment of peptides, proteins, and nucleic acids for therapeutic and diagnostic applications.
- Polymer Chemistry: Assists in synthesizing PEG-based polymer conjugates for advanced drug delivery and biomaterials.
- Surface Modification: Functionalizes nanoparticles, microarrays, and biosensors, enhancing material properties for diagnostics and biotechnology.
- Nanotechnology: Supports targeted drug delivery and imaging, making it valuable in advanced biomedical applications.
Conclusion:
In summary, t-Boc-N-Amido-PEG9-Azide (CAS: 2112731-50-5) is a vital tool in modern chemical research. Its t-Boc protection, PEG9 spacer, and azide group make it highly suitable for click chemistry, bioconjugation, and nanotechnology. Furthermore, its high solubility and purity ensure reliable performance in a broad range of applications.
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