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Home  > 4-Methyl-1,3-oxazole-5-carbonitrile

AA01760

1003-52-7 | 4-Methyl-1,3-oxazole-5-carbonitrile

Packsize Purity Availability Price Discounted Price    Quantity
100mg 95% in stock $80.00 $56.00 -   +
250mg 95% in stock $98.00 $68.00 -   +
1g 95% in stock $356.00 $249.00 -   +
5g 95% in stock $1,642.00 $1,149.00 -   +

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

*All prices are in USD.

Description
Catalog Number: AA01760
Chemical Name: 4-Methyl-1,3-oxazole-5-carbonitrile
CAS Number: 1003-52-7
Molecular Formula: C5H4N2O
Molecular Weight: 108.0981
MDL Number: MFCD01111976
SMILES: Cc1ncoc1C#N

 

Upstream Synthesis Route
  • 4-Methyloxazole-5-carbonitrile is a versatile compound that finds extensive application in chemical synthesis as a building block for various organic molecules. This compound serves as a key intermediate in the preparation of pharmaceuticals, agrochemicals, and fine chemicals. It exhibits reactivity towards a wide range of nucleophiles and electrophiles, making it an important component in the construction of complex organic structures.In chemical synthesis, 4-Methyloxazole-5-carbonitrile acts as a valuable precursor for the introduction of functional groups such as amines, acids, and alcohols. Its unique structural features allow for diverse transformations, enabling the incorporation of specific molecular motifs essential for the desired properties of the final product. Whether used in a multistep synthesis or as a starting material for a key reaction, this compound plays a crucial role in the efficient and controlled assembly of complex organic molecules.Furthermore, the presence of the nitrile group in 4-Methyloxazole-5-carbonitrile offers opportunities for additional derivatization, leading to the synthesis of various heterocyclic compounds and biologically active molecules. Its versatile nature and compatibility with a wide range of synthetic methodologies make it a valuable tool for chemists working in drug discovery, materials science, and other fields requiring the precise manipulation of molecular structures.
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