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Atomfair 1-Phenylisoquinoline C15H11N
Description 1-Phenylisoquinoline (CAS No. 3297-72-1) is a high-purity organic compound with the molecular formula C15H11N , widely utilized in pharmaceutical research, material science, and coordination chemistry. This heterocyclic aromatic compound features an isoquinoline core substituted with a phenyl group at the 1-position, offering unique electronic and steric properties for ligand design and catalytic applications. Our product is rigorously tested to ensure ??98% purity (HPLC/GC), with trace metal analysis available upon request. Supplied in amber glass vials under inert atmosphere to ensure stability, it is ideal for sensitive synthetic protocols. Researchers value 1-Phenylisoquinoline for its role in developing fluorescent probes, metal-organic…
Description
Description
1-Phenylisoquinoline (CAS No. 3297-72-1) is a high-purity organic compound with the molecular formula C15H11N, widely utilized in pharmaceutical research, material science, and coordination chemistry. This heterocyclic aromatic compound features an isoquinoline core substituted with a phenyl group at the 1-position, offering unique electronic and steric properties for ligand design and catalytic applications. Our product is rigorously tested to ensure ??98% purity (HPLC/GC), with trace metal analysis available upon request. Supplied in amber glass vials under inert atmosphere to ensure stability, it is ideal for sensitive synthetic protocols. Researchers value 1-Phenylisoquinoline for its role in developing fluorescent probes, metal-organic frameworks (MOFs), and as a building block for bioactive molecules targeting neurological pathways.
- CAS No: 3297-72-1
- Molecular Formula: C15H11N
- Molecular Weight: 205.25
- Exact Mass: 205.089149355
- Monoisotopic Mass: 205.089149355
- IUPAC Name: 1-phenylisoquinoline
- SMILES: C1=CC=C(C=C1)C2=NC=CC3=CC=CC=C32
- Synonyms: 1-Phenylisoquinoline, Isoquinoline, 1-phenyl-, DTXSID20186613, DTXCID60109104, 678-457-6
Application
1-Phenylisoquinoline serves as a key intermediate in the synthesis of antitumor and antiviral agents due to its ability to intercalate DNA. In materials science, it acts as a ligand for transition metal complexes used in OLEDs and photovoltaic devices. The compound’s rigid planar structure makes it valuable for constructing supramolecular architectures with precise ??-?? stacking interactions.
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