NH-bis(C2-PEG1-azide)

≥95%

Reagent Code: #109093
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CAS Number 2100306-81-6

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 243.27 g/mol
Formula C₈H₁₇N₇O₂
inventory_2 Storage & Handling
Storage 2-8°C, sealed, dry

description Product Description

NH-bis(C2-PEG1-azide) is widely used in bioconjugation and click chemistry applications due to its dual azide functional groups. It serves as a linker molecule, enabling the attachment of biomolecules, polymers, or nanoparticles through copper-catalyzed azide-alkyne cycloaddition (CuAAC) reactions. This chemical is particularly valuable in the development of drug delivery systems, where it facilitates the precise coupling of therapeutic agents to carriers like PEGylated nanoparticles. It is also employed in surface modification and functionalization, enhancing the biocompatibility and targeting efficiency of materials. Additionally, NH-bis(C2-PEG1-azide) plays a role in the synthesis of hydrogels and biomaterials, contributing to advancements in tissue engineering and regenerative medicine. Its versatility makes it a key component in research and industrial applications requiring controlled and efficient molecular assembly.

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Size Availability Unit Price Quantity
inventory 100mg
10-20 days ฿14,400.00
NH-bis(C2-PEG1-azide)
NH-bis(C2-PEG1-azide) is widely used in bioconjugation and click chemistry applications due to its dual azide functional groups. It serves as a linker molecule, enabling the attachment of biomolecules, polymers, or nanoparticles through copper-catalyzed azide-alkyne cycloaddition (CuAAC) reactions. This chemical is particularly valuable in the development of drug delivery systems, where it facilitates the precise coupling of therapeutic agents to carriers like PEGylated nanoparticles. It is also employed in surface modification and functionalization, enhancing the biocompatibility and targeting efficiency of materials. Additionally, NH-bis(C2-PEG1-azide) plays a role in the synthesis of hydrogels and biomaterials, contributing to advancements in tissue engineering and regenerative medicine. Its versatility makes it a key component in research and industrial applications requiring controlled and efficient molecular assembly.
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