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20637-09-6

Benzenebutanoic acid, 4-amino-, methyl ester

Catalog#: AR002J5T  |   CAS#: 20637-09-6  |   MDL#: MFCD07366753  |   MF: C11H15NO2  |   MW: 193.2423

Packsize Purity Price Availability Quantity
100mg 98% $5.00 Global Stock Buy Now Add To Cart
250mg 98% $8.00 Global Stock Buy Now Add To Cart
1g 98% $21.00 Global Stock Buy Now Add To Cart
5g 98% $69.00 Global Stock Buy Now Add To Cart
10g 98% $133.00 Global Stock Buy Now Add To Cart
25g 98% $331.00 Global Stock Buy Now Add To Cart
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Catalog Number AR002J5T
Chemical Name Benzenebutanoic acid, 4-amino-, methyl ester
CAS Number 20637-09-6
Molecular Formula C11H15NO2
Molecular Weight 193.2423
MDL Number MFCD07366753
SMILES COC(=O)CCCc1ccc(cc1)N

Methyl 4-(4-aminophenyl)butanoate is a versatile compound widely utilized in chemical synthesis, particularly in the pharmaceutical industry. With its unique molecular structure, this compound serves as a key intermediate in the preparation of various biologically active molecules and pharmaceutical agents.In organic synthesis, Methyl 4-(4-aminophenyl)butanoate acts as a crucial building block for the construction of complex organic compounds. Its presence enables the introduction of specific functionalities and structural motifs essential for enhancing the pharmacological properties of the final products. By incorporating this compound into synthetic pathways, chemists can access structurally diverse molecules with potential therapeutic applications.Furthermore, the presence of an amino group in Methyl 4-(4-aminophenyl)butanoate enhances its reactivity and compatibility with a wide range of coupling reactions. This characteristic makes it a valuable substrate for the formation of peptide bonds, amide linkages, and other bioconjugates essential in drug design and development.Overall, Methyl 4-(4-aminophenyl)butanoate plays a pivotal role in mediating key synthetic transformations and enabling the efficient construction of bioactive molecules with tailored properties. Its strategic incorporation in chemical synthesis processes underscores its significance as a valuable tool for advancing pharmaceutical research and innovation.
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