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6-chloronaphthalene-2-carboxylic acid

6-chloronaphthalene-2-carboxylic acid

8-nitro-naphthalene-1-carboxylic acid

$300.00
CAS No.: 2216-13-9
Catalog No.: WLZ1848
Purity: 95%
MF: C11H7NO4
MW: 217.18
Storage: 2-8 degree Celsius
SMILES: [N+](=O)([O-])C=1C=CC=C2C=CC=C(C12)C(=O)O
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CAS NO.: 2216-13-9; 8-nitro-naphthalene-1-carboxylic acid. PROPERTIES: This nitronaphthalene carboxylic acid features a nitro group on a naphthalene ring connected to a carboxylic acid group, creating a molecule with potential applications in organic synthesis and pharmaceutical research. The 8-nitro-naphthalene-1-carboxylic acid typically appears as a white to off-white crystalline solid with moderate solubility in common organic solvents. Its molecular structure includes an electron-withdrawing nitro group that influences the electronic properties of the aromatic system. For optimal stability and to prevent degradation, this compound should be stored at 2-8 degree Celsius in a tightly sealed container under anhydrous conditions. When handling, appropriate safety measures including nitrile gloves and safety goggles are essential. This compound is sensitive to moisture and may hydrolyze in aqueous environments. In case of accidental spillage, clean the area with a damp cloth and dispose of materials according to local regulations. APPLICATIONS: The 8-nitro-naphthalene-1-carboxylic acid serves as a valuable intermediate in the synthesis of highly functionalized aromatic compounds and materials with specific electronic properties. The carboxylic acid group provides a handle for further functionalization through reactions such as esterification or amidation. In medicinal chemistry, this compound functions as a building block for developing pharmaceuticals targeting enzyme inhibitors and receptor modulators. The nitro substituent contributes to target binding affinity and selectivity. Additionally, the molecule finds utility in materials science as a monomer for creating polymers with specific electronic and optical properties. Researchers utilizing this compound benefit from its defined substitution pattern, enabling the development of advanced materials with tailored electronic characteristics.

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