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515137-48-1

N-methyl-2-(3-Fluorophenyl)ethanamine

Catalog#: AR003TV6  |   CAS#: 515137-48-1  |   MDL#: MFCD10568163  |   MF: C9H12FN  |   MW: 153.19668320000002

Packsize Purity Price Availability Quantity
100mg 97% $56.00 Global Stock Buy Now Add To Cart
250mg 97% $65.00 Global Stock Buy Now Add To Cart
1g 97% $80.00 Global Stock Buy Now Add To Cart
5g 97% $217.00 Global Stock Buy Now Add To Cart
25g 97% $714.00 Global Stock Buy Now Add To Cart
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Catalog Number AR003TV6
Chemical Name N-methyl-2-(3-Fluorophenyl)ethanamine
CAS Number 515137-48-1
Molecular Formula C9H12FN
Molecular Weight 153.19668320000002
MDL Number MFCD10568163
SMILES CNCCc1cccc(c1)F

N-Methyl-2-(3-fluorophenyl)ethanamine, also known as $name$, is a crucial intermediate in chemical synthesis. This compound plays a vital role in the production of various pharmaceuticals, agrochemicals, and fine chemicals. Due to its unique structure, $name$ is frequently utilized as a building block in the creation of complex organic molecules.In chemical synthesis, N-Methyl-2-(3-fluorophenyl)ethanamine serves as a versatile reagent for the construction of diverse chemical compounds. Its functional groups enable it to participate in various reactions, including nucleophilic substitutions, condensations, and reductions. By incorporating $name$ into synthetic pathways, chemists can efficiently introduce the 3-fluorophenyl moiety while controlling the stereochemistry and regiochemistry of the final product.Furthermore, the presence of the N-methyl group in N-Methyl-2-(3-fluorophenyl)ethanamine enhances the compound's stability and reactivity, making it a valuable tool in the development of new chemical entities. Its ability to undergo selective transformations under mild reaction conditions makes it a preferred choice for chemists seeking to optimize the efficiency of their synthetic routes.Overall, the application of N-Methyl-2-(3-fluorophenyl)ethanamine in chemical synthesis underscores its significance in modern organic chemistry. By leveraging its structural features and reactivity, researchers can access a wide range of compounds with potential applications in medicine, agriculture, and materials science.
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