AE24933
Packsize | Purity | Availability | Price | Discounted Price | Quantity | |
---|---|---|---|---|---|---|
1g | 98% | in stock | $201.00 | $141.00 | - + | |
5g | 98% | in stock | $758.00 | $531.00 | - + |
*All products are for research use only and not intended for human or animal use.
*All prices are in USD.
Catalog Number: | AE24933 |
Chemical Name: | Ethyl 4-(3-nitrophenyl)benzoate |
CAS Number: | 108620-55-9 |
Molecular Formula: | C15H13NO4 |
Molecular Weight: | 271.268 |
MDL Number: | MFCD21332969 |
SMILES: | CCOC(=O)c1ccc(cc1)c1cccc(c1)[N+](=O)[O-] |
Complexity: | 344 |
Covalently-Bonded Unit Count: | 1 |
Heavy Atom Count: | 20 |
Hydrogen Bond Acceptor Count: | 4 |
Rotatable Bond Count: | 4 |
XLogP3: | 4.1 |
Ethyl 3'-nitro-[1,1'-biphenyl]-4-carboxylate is a versatile compound that finds extensive application in chemical synthesis, specifically in the field of organic chemistry. This compound serves as a key building block for the synthesis of various important organic molecules due to its unique structural properties and reactivity.In chemical synthesis, Ethyl 3'-nitro-[1,1'-biphenyl]-4-carboxylate is commonly utilized for the formation of complex heterocyclic compounds. Its nitro and carboxylate functional groups make it a valuable precursor for the introduction of various substituents and functional moieties into target molecules. Through selective chemical transformations such as reduction, nitration, and esterification, this compound can be further modified to yield a wide range of derivatives with diverse chemical properties.Moreover, the presence of the biphenyl scaffold in Ethyl 3'-nitro-[1,1'-biphenyl]-4-carboxylate imparts rigidity and structural integrity to the resulting molecules, making them potentially useful in pharmaceutical and materials chemistry. This compound is particularly instrumental in the synthesis of biologically active compounds and advanced materials with tailored properties.Overall, the strategic utilization of Ethyl 3'-nitro-[1,1'-biphenyl]-4-carboxylate in chemical synthesis enables the efficient construction of intricate molecular architectures, highlighting its significance as a valuable intermediate in the synthesis of diverse organic compounds.