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Home  > 1-(4-aminobutyl)-1,2-dihydropyridin-2-one

AV43582

1016685-12-3 | 1-(4-aminobutyl)-1,2-dihydropyridin-2-one

Packsize Purity Availability Price Discounted Price    Quantity
50mg 95% 1 week $183.00 $128.00 -   +
100mg 95% 1 week $249.00 $174.00 -   +
250mg 95% 1 week $333.00 $233.00 -   +
500mg 95% 1 week $581.00 $407.00 -   +
1g 95% 1 week $757.00 $530.00 -   +
2.5g 95% 1 week $1,438.00 $1,007.00 -   +
5g 95% 1 week $2,102.00 $1,471.00 -   +

*All products are for research use only and not intended for human or animal use.

*All prices are in USD.

Description
Catalog Number: AV43582
Chemical Name: 1-(4-aminobutyl)-1,2-dihydropyridin-2-one
CAS Number: 1016685-12-3
Molecular Formula: C9H14N2O
Molecular Weight: 166.2203
MDL Number: MFCD09808652
SMILES: NCCCCn1ccccc1=O

 

Upstream Synthesis Route
  • The compound 1-(4-Aminobutyl)-1,2-dihydropyridin-2-one, also known as $name$, is a versatile molecule widely utilized in chemical synthesis. Its unique structure containing an aminobutyl group and a dihydropyridin-2-one moiety lends itself to various applications in the synthesis of complex organic compounds.One key application of $name$ in chemical synthesis is its role as a building block for the construction of heterocyclic compounds. By leveraging the reactivity of the aminobutyl group and the dihydropyridin-2-one ring, chemists can efficiently assemble diverse molecular frameworks with specific functionalities and stereochemistries. This compound serves as a valuable intermediate in the synthesis of pharmaceuticals, agrochemicals, and materials with tailored properties.Furthermore, the presence of both a primary amine and a carbonyl group in $name$ enables it to participate in a range of chemical reactions, including condensations, reductions, and cyclizations. This versatility makes it a valuable tool in the hands of synthetic chemists seeking to access structurally complex molecules in a controlled and efficient manner.Overall, the strategic incorporation of 1-(4-Aminobutyl)-1,2-dihydropyridin-2-one in chemical synthesis enables the efficient construction of diverse molecular architectures with the potential for applications in medicinal chemistry, materials science, and beyond.
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