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Atomfair 7-Bromo-2-naphthol C10H7BrO
Description 7-Bromo-2-naphthol (CAS No. 116230-30-9) is a high-purity brominated naphthol derivative with the molecular formula C10H7BrO . This compound, also known by its IUPAC name 7-bromonaphthalen-2-ol , is a versatile intermediate in organic synthesis and pharmaceutical research. Its unique structure, featuring a bromine substituent at the 7-position and a hydroxyl group at the 2-position of the naphthalene ring, makes it valuable for coupling reactions, ligand synthesis, and as a building block for advanced materials. Our product is rigorously tested for purity and consistency, ensuring optimal performance in sensitive applications. Available in various quantities to suit laboratory-scale and industrial needs, 7-Bromo-2-naphthol…
Description
Description
7-Bromo-2-naphthol (CAS No. 116230-30-9) is a high-purity brominated naphthol derivative with the molecular formula C10H7BrO. This compound, also known by its IUPAC name 7-bromonaphthalen-2-ol, is a versatile intermediate in organic synthesis and pharmaceutical research. Its unique structure, featuring a bromine substituent at the 7-position and a hydroxyl group at the 2-position of the naphthalene ring, makes it valuable for coupling reactions, ligand synthesis, and as a building block for advanced materials. Our product is rigorously tested for purity and consistency, ensuring optimal performance in sensitive applications. Available in various quantities to suit laboratory-scale and industrial needs, 7-Bromo-2-naphthol is supplied with comprehensive analytical documentation, including HPLC, NMR, and MS data.
- CAS No: 116230-30-9
- Molecular Formula: C10H7BrO
- Molecular Weight: 223.07
- Exact Mass: 221.96803
- Monoisotopic Mass: 221.96803
- IUPAC Name: 7-bromonaphthalen-2-ol
- SMILES: C1=CC(=CC2=C1C=CC(=C2)Br)O
- Synonyms: 7-Bromo-2-naphthol, 628-835-1, 7-Bromonaphthalen-2-ol, 116230-30-9, 2-BROMO-7-HYDROXYNAPHTHALENE
Application
7-Bromo-2-naphthol is widely used as a key intermediate in the synthesis of pharmaceuticals, agrochemicals, and organic materials. It serves as a precursor for fluorescent dyes, liquid crystals, and advanced polymers due to its stable aromatic structure and reactive functional groups. Researchers also utilize this compound in Suzuki-Miyaura and other cross-coupling reactions to construct complex molecular architectures. Its bromine moiety enables further functionalization, making it valuable in medicinal chemistry for drug discovery.
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