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6337-24-2

p-(p-nitrophenoxy)anisole

Catalog#: AR00EM5O  |   CAS#: 6337-24-2  |   MDL#: MFCD00443498  |   MF: C13H11NO4  |   MW: 245.2307

Packsize Purity Price Availability Quantity
100mg 97% $100.00 Global Stock Buy Now Add To Cart
250mg 97% $130.00 Global Stock Buy Now Add To Cart
500mg 97% $147.00 Global Stock Buy Now Add To Cart
1g 97% $196.00 Global Stock Buy Now Add To Cart
5g 97% $587.00 Global Stock Buy Now Add To Cart
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Catalog Number AR00EM5O
Chemical Name p-(p-nitrophenoxy)anisole
CAS Number 6337-24-2
Molecular Formula C13H11NO4
Molecular Weight 245.2307
MDL Number MFCD00443498
SMILES COc1ccc(cc1)Oc1ccc(cc1)[N+](=O)[O-]

1-Methoxy-4-(4-nitrophenoxy)benzene, also known as MNPNB, is a versatile chemical compound commonly used in chemical synthesis processes. This compound is valued for its role as a key building block in the creation of various organic molecules and materials.MNPNB is frequently utilized as a precursor in the synthesis of pharmaceuticals, agrochemicals, and other specialty chemicals. Its unique structure and properties make it an important intermediate in the development of novel compounds with diverse applications.In organic synthesis, MNPNB serves as an essential reagent for introducing specific functional groups or moieties into target molecules. By leveraging the reactivity of the methoxy and nitrophenyl groups, chemists can strategically incorporate MNPNB into complex molecular structures, enabling the production of compounds with desired properties and functionalities.Furthermore, MNPNB plays a crucial role in the elaboration of intricate chemical structures through various synthetic methodologies, such as aromatic substitution reactions, cross-coupling reactions, and heterocycle formation. Its versatility and compatibility with a wide range of synthetic techniques make it a valuable asset in the toolkit of synthetic chemists.Overall, the application of 1-Methoxy-4-(4-nitrophenoxy)benzene in chemical synthesis underscores its significance as a fundamental building block for the design and creation of diverse organic compounds with tailored properties and functionality.
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