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59559-06-7

1,8-Diazido-3,5-dioxaoctane

Catalog#: AR00EFA0  |   CAS#: 59559-06-7  |   MDL#: MFCD06637650  |   MF: C6H12N6O2  |   MW: 200.1985

Packsize Purity Price Availability Quantity
100mg 98% $89.00 Global Stock Buy Now Add To Cart
250mg 98% $188.00 Global Stock Buy Now Add To Cart
1g 98% $340.00 Global Stock Buy Now Add To Cart
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Catalog Number AR00EFA0
Chemical Name 1,8-Diazido-3,5-dioxaoctane
CAS Number 59559-06-7
Molecular Formula C6H12N6O2
Molecular Weight 200.1985
MDL Number MFCD06637650
SMILES [N-]=[N+]=NCCOCOCCCN=[N+]=[N-]

1,8-DIAZIDO-3,5-DIOXAOCTANE, also known as DDAO, is a versatile compound used in chemical synthesis for its unique properties and applications. In organic chemistry, DDAO is commonly employed as a bifunctional linking reagent due to its two azide groups at the 1 and 8 positions, making it an ideal building block for synthesizing complex molecules.One of the key applications of 1,8-DIAZIDO-3,5-DIOXAOCTANE in chemical synthesis is its use in click chemistry reactions. Click chemistry refers to a set of highly efficient and selective reactions that are used to rapidly construct molecular scaffolds. DDAO can participate in click chemistry reactions, such as the copper-catalyzed azide-alkyne cycloaddition, to create triazole-linked compounds. This makes DDAO a valuable tool for connecting different functional groups in organic synthesis.Additionally, DDAO can serve as a crosslinking agent in polymer chemistry. By incorporating DDAO into polymer chains, researchers can modify the physical and mechanical properties of polymers, such as altering their solubility, thermal stability, and biocompatibility. This versatility makes DDAO a sought-after compound in the field of polymer science for designing advanced materials with tailored properties.Overall, 1,8-DIAZIDO-3,5-DIOXAOCTANE plays a crucial role in chemical synthesis by enabling the efficient construction of complex molecules and materials through click chemistry reactions and polymer crosslinking strategies. Its unique structural features and reactivity make it a valuable reagent for chemists seeking to explore new avenues in organic and polymer chemistry.
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