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482308-06-5

(3-methoxy-4-morpholin-4-ylphenyl)amine

Catalog#: AR00DM0L  |   CAS#: 482308-06-5  |   MDL#: MFCD09755872  |   MF: C11H16N2O2  |   MW: 208.2569

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Catalog Number AR00DM0L
Chemical Name (3-methoxy-4-morpholin-4-ylphenyl)amine
CAS Number 482308-06-5
Molecular Formula C11H16N2O2
Molecular Weight 208.2569
MDL Number MFCD09755872
SMILES COc1cc(N)ccc1N1CCOCC1

In chemical synthesis, 3-METHOXY-4-MORPHOLINOANILINE DIHYDROCHLORIDE serves as a versatile building block for the creation of various organic compounds. With its distinctive structure combining a methoxy group and a morpholino ring, this compound plays a crucial role in the development of pharmaceuticals, agrochemicals, and specialty chemicals.One key application of 3-METHOXY-4-MORPHOLINOANILINE DIHYDROCHLORIDE is in the synthesis of dyes and pigments. By leveraging its unique chemical properties, researchers can modify the compound to impart specific colors and dyeing properties, making it an essential component in the production of vibrant and long-lasting colorants.Furthermore, this compound also finds utility in medicinal chemistry, particularly in the creation of novel drug candidates. The morpholino group's biological activity and the methoxy group's stabilizing effect make 3-METHOXY-4-MORPHOLINOANILINE DIHYDROCHLORIDE valuable for designing pharmaceutical agents with enhanced efficacy and reduced side effects. Its ability to serve as a scaffold for diverse molecular modifications further underscores its significance in drug discovery efforts.Moreover, 3-METHOXY-4-MORPHOLINOANILINE DIHYDROCHLORIDE can participate in various reactions such as acylation, alkylation, and condensation, expanding its synthetic versatility. This compound's compatibility with different synthetic pathways and functional group transformations makes it a valuable asset for chemists seeking to access a wide range of organic structures efficiently.Overall, 3-METHOXY-4-MORPHOLINOANILINE DIHYDROCHLORIDE's role in chemical synthesis extends beyond its individual properties, offering researchers a powerful tool for building complex molecules with tailored properties and applications.
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