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749244-38-0

N3-PEG23-CH2CH2NH2

Catalog#: AR00G8B6  |   CAS#: 749244-38-0  |   MDL#: MFCD08274605  |   MF: C24H50N4O11  |   MW: 570.674

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Catalog Number AR00G8B6
Chemical Name N3-PEG23-CH2CH2NH2
CAS Number 749244-38-0
Molecular Formula C24H50N4O11
Molecular Weight 570.674
MDL Number MFCD08274605
SMILES NCCOCCOCCOCCOCCOCCOCCOCCOCCOCCOCCOCCN=[N+]=[N-]

Poly(oxy-1,2-ethanediyl), α-(2-aminoethyl)-ω-(2-azidoethoxy)- is a versatile compound that plays a crucial role in chemical synthesis processes. This unique compound is widely used as a bifunctional linker in organic synthesis, particularly in the field of macromolecular chemistry. By leveraging its dual amino and azide functional groups, this compound serves as a valuable building block for creating complex molecular structures and polymers.In chemical synthesis, Poly(oxy-1,2-ethanediyl), α-(2-aminoethyl)-ω-(2-azidoethoxy)- acts as a crosslinker that facilitates the formation of covalent bonds between different molecules or polymer chains. Its ability to link various functional groups together enables the creation of tailored polymers with specific properties such as increased stability, enhanced solubility, or improved functionality. Additionally, this compound can be used in bioconjugation reactions and the incorporation of biomolecules into synthetic polymers, opening up exciting possibilities in the development of advanced materials and bioactive compounds.Furthermore, the presence of both amino and azide moieties in Poly(oxy-1,2-ethanediyl), α-(2-aminoethyl)-ω-(2-azidoethoxy)- offers opportunities for further chemical modifications and functionalization. Chemists can selectively modify each functional group to introduce specific functionalities, enhance reactivity, or attach additional molecular building blocks, expanding the versatility and applications of this compound in synthetic chemistry.Overall, Poly(oxy-1,2-ethanediyl), α-(2-aminoethyl)-ω-(2-azidoethoxy)- serves as a valuable tool in chemical synthesis, enabling researchers to create intricate molecular structures, design novel polymers, and explore innovative pathways for material design and functionalization.
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