NH-bis(PEG3-azide)
≥95%
Reagent
Code: #109097
CAS Number
1258939-39-7
blur_circular Chemical Specifications
scatter_plot
Molecular Information
Weight
419.48 g/mol
Formula
C₁₆H₃₃N₇O₆
inventory_2
Storage & Handling
Storage
2-8°C, sealed, dry
description Product Description
NH-bis(PEG3-azide) is widely used in bioconjugation and click chemistry applications due to its dual azide functional groups and polyethylene glycol (PEG) spacer. The azide groups enable efficient and selective reactions with alkyne-containing molecules via copper-catalyzed azide-alkyne cycloaddition (CuAAC), making it valuable for labeling, crosslinking, and modifying biomolecules such as proteins, peptides, and nucleic acids. The PEG spacer enhances solubility, reduces steric hindrance, and improves biocompatibility, making it suitable for use in drug delivery systems, biophysical studies, and the development of therapeutic conjugates. Additionally, it is employed in materials science for surface functionalization and the creation of advanced polymeric materials. Its versatility and reliability in forming stable triazole linkages make it a key reagent in chemical biology and nanotechnology research.
shopping_cart Available Sizes & Pricing
NH-bis(PEG3-azide)
NH-bis(PEG3-azide) is widely used in bioconjugation and click chemistry applications due to its dual azide functional groups and polyethylene glycol (PEG) spacer. The azide groups enable efficient and selective reactions with alkyne-containing molecules via copper-catalyzed azide-alkyne cycloaddition (CuAAC), making it valuable for labeling, crosslinking, and modifying biomolecules such as proteins, peptides, and nucleic acids. The PEG spacer enhances solubility, reduces steric hindrance, and improves biocompatibility, making it suitable for use in drug delivery systems, biophysical studies, and the development of therapeutic conjugates. Additionally, it is employed in materials science for surface functionalization and the creation of advanced polymeric materials. Its versatility and reliability in forming stable triazole linkages make it a key reagent in chemical biology and nanotechnology research.
Mechanism | - |
Appearance | - |
Longevity | - |
Strength | - |
Storage | - |
Shelf Life | - |
Allergen(s) | - |
Dosage (Range) | - |
Recommended Dosage | - |
Dosage (Per Day) | - |
Recommended Dosage (Per Day) | - |
Mix Method | - |
Heat Resistance | - |
Stable in pH range | - |
Solubility | - |
Product Types | - |
INCI | - |
Purchase History for
Loading purchase history...
Cart
No products
Subtotal:
€0.00
Total
€0.00
EUR