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Atomfair 9-Chloroacridine C13H8ClN
Description 9-Chloroacridine (CAS No. 1207-69-8) is a high-purity organic compound with the molecular formula C13H8ClN , widely utilized in pharmaceutical research, material science, and chemical synthesis. This yellow to pale brown crystalline solid exhibits excellent stability and reactivity, making it a valuable intermediate for heterocyclic chemistry applications. With an IUPAC name of 9-chloroacridine , this compound is rigorously tested to meet the highest industry standards, ensuring optimal performance in sensitive reactions. Ideal for researchers and scientists, our 9-Chloroacridine is supplied with comprehensive analytical documentation, including HPLC, NMR, and MS data, guaranteeing traceability and consistency for your experimental needs.
Description
Description
9-Chloroacridine (CAS No. 1207-69-8) is a high-purity organic compound with the molecular formula C13H8ClN, widely utilized in pharmaceutical research, material science, and chemical synthesis. This yellow to pale brown crystalline solid exhibits excellent stability and reactivity, making it a valuable intermediate for heterocyclic chemistry applications. With an IUPAC name of 9-chloroacridine, this compound is rigorously tested to meet the highest industry standards, ensuring optimal performance in sensitive reactions. Ideal for researchers and scientists, our 9-Chloroacridine is supplied with comprehensive analytical documentation, including HPLC, NMR, and MS data, guaranteeing traceability and consistency for your experimental needs.
- CAS No: 1207-69-8
- Molecular Formula: C13H8ClN
- Molecular Weight: 213.66
- Exact Mass: 213.0345270
- Monoisotopic Mass: 213.0345270
- IUPAC Name: 9-chloroacridine
- SMILES: C1=CC=C2C(=C1)C(=C3C=CC=CC3=N2)Cl
- Synonyms: 9-Chloroacridine, Acridine, 9-chloro-, EINECS 214-895-2, NSC 51950, AI3-52323
Application
9-Chloroacridine serves as a key intermediate in the synthesis of acridine-based pharmaceuticals, including antimalarial and anticancer agents. It is also employed in the development of fluorescent dyes and sensors due to its strong photophysical properties. Researchers utilize this compound in organic electronic materials for its electron-accepting characteristics.
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