Description
Phenanthren-2-ol (CAS No. 605-55-0) is a high-purity polycyclic aromatic compound with the molecular formula C14H10O, widely utilized in advanced organic synthesis and material science research. This white to off-white crystalline solid (IUPAC name: phenanthren-2-ol) exhibits exceptional stability and solubility in common organic solvents, making it ideal for ligand design, fluorescence studies, and as a precursor for functionalized phenanthrene derivatives. Our product is rigorously analyzed by GC/MS, HPLC, and 1H/13C NMR to ensure ≥98% purity, with batch-specific certificates of analysis provided. Available in research quantities (100mg to 25kg) with customizable packaging under inert atmosphere for sensitive applications. Store in amber glass at 2-8°C under nitrogen for optimal shelf life.
Properties
- CAS Number: 605-55-0
- Complexity: 225
- IUPAC Name: phenanthren-2-ol
- InChI: InChI=1S/C14H10O/c15-12-7-8-14-11(9-12)6-5-10-3-1-2-4-13(10)14/h1-9,15H
- InChI Key: YPWLZGITFNGGKW-UHFFFAOYSA-N
- Exact Mass: 194.073164938
- Molecular Formula: C14H10O
- Molecular Weight: 194.23
- SMILES: C1=CC=C2C(=C1)C=CC3=C2C=CC(=C3)O
- Topological: 20.2
- Monoisotopic Mass: 194.073164938
- Synonyms: Phenanthren-2-ol, 2-Phenanthrol, 2-hydroxyphenanthrene, 2-Phenanthrenol, JZU8H3H6VM, NSC 2576, NSC-2576, EINECS 210-091-0, DTXSID8052722, CHEBI:19760, YPWLZGITFNGGKW-UHFFFAOYSA-, DTXCID8031312, 210-091-0, inchi=1/c14h10o/c15-12-7-8-14-11(9-12)6-5-10-3-1-2-4-13(10)14/h1-9,15h, ypwlzgitfnggkw-uhfffaoysa-n, 605-55-0, 2-Hydroxy-phenanthrene, PHENANTHRENOL, 2-Hydroxyphenanthrene 10 microg/mL in Acetonitrile, UNII-JZU8H3H6VM, SCHEMBL80502, SCHEMBL1170838, SCHEMBL1986723, NSC2576, AKOS006272747, DB-053645, NS00034386, F88045, Q27109246
Application
Phenanthren-2-ol serves as a critical building block in pharmaceutical intermediate synthesis, particularly for developing kinase inhibitors and anticancer agents. Its extended conjugated system makes it valuable for organic optoelectronic materials, including OLED emitters and molecular sensors. Researchers employ this compound as a fluorescent probe in environmental analysis of polycyclic aromatic hydrocarbon (PAH) metabolites.
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