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51713-72-5

BENZYL-[2-(4-METHOXY-PHENYL)-ETHYL]-AMINE

Catalog#: AR00DAK6  |   CAS#: 51713-72-5  |   MDL#: MFCD01135706  |   MF: C16H19NO  |   MW: 241.3282

Packsize Purity Price Availability Quantity
500mg 97% $119.00 Global Stock Buy Now Add To Cart
1g 97% $180.00 Global Stock Buy Now Add To Cart
5g 97% $526.00 Global Stock Buy Now Add To Cart
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Catalog Number AR00DAK6
Chemical Name BENZYL-[2-(4-METHOXY-PHENYL)-ETHYL]-AMINE
CAS Number 51713-72-5
Molecular Formula C16H19NO
Molecular Weight 241.3282
MDL Number MFCD01135706
SMILES COc1ccc(cc1)CCNCc1ccccc1

4-Methoxy-N-benzylbenzeneethanamine, also known as 4-Methoxy-N-benzylphenylethylamine, is a versatile compound frequently employed in chemical synthesis due to its unique structural properties and diverse reactivity. This particular amine derivative is widely utilized as a key building block in the synthesis of various pharmaceuticals, agrochemicals, and other fine chemicals.One prominent application of 4-Methoxy-N-benzylbenzeneethanamine in chemical synthesis is its use as a precursor in the production of novel drug molecules. By serving as a starting material, this compound can undergo various chemical transformations such as acylation, alkylation, and cyclization reactions to generate structurally elaborate and biologically active compounds. Additionally, the presence of the methoxy group and the benzyl moiety in the molecule can impart specific pharmacological properties to the final products, making them potentially valuable candidates for therapeutic applications.Moreover, 4-Methoxy-N-benzylbenzeneethanamine can also be utilized in the preparation of complex organic compounds through its involvement in multistep synthesis routes. Its ability to act as a nucleophile, electrophile, or a directing group in different reactions expands its utility in creating diverse chemical entities with tailored functionalities and properties.In summary, the strategic incorporation of 4-Methoxy-N-benzylbenzeneethanamine in chemical synthesis enables the efficient and controlled assembly of intricate molecular structures, driving advancements in drug discovery, material science, and various other fields of research and development.
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