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Atomfair 8-bromo-11H-benzo[a]carbazole C16H10BrN
Description 8-Bromo-11H-benzo[a]carbazole (CAS No. 21064-34-6) is a high-purity brominated carbazole derivative with the molecular formula C16H10BrN . This heterocyclic aromatic compound is a valuable building block in organic synthesis and materials science, particularly for the development of optoelectronic materials, pharmaceuticals, and agrochemicals. Its rigid planar structure and bromine substituent make it an excellent intermediate for Suzuki coupling, Buchwald-Hartwig amination, and other cross-coupling reactions. Available in >95% purity (HPLC), this compound is supplied as a crystalline solid with strict quality control to ensure batch-to-batch consistency. Ideal for researchers working on organic semiconductors, fluorescent probes, or medicinal chemistry applications.
Description
Description
8-Bromo-11H-benzo[a]carbazole (CAS No. 21064-34-6) is a high-purity brominated carbazole derivative with the molecular formula C16H10BrN. This heterocyclic aromatic compound is a valuable building block in organic synthesis and materials science, particularly for the development of optoelectronic materials, pharmaceuticals, and agrochemicals. Its rigid planar structure and bromine substituent make it an excellent intermediate for Suzuki coupling, Buchwald-Hartwig amination, and other cross-coupling reactions. Available in >95% purity (HPLC), this compound is supplied as a crystalline solid with strict quality control to ensure batch-to-batch consistency. Ideal for researchers working on organic semiconductors, fluorescent probes, or medicinal chemistry applications.
- CAS No: 21064-34-6
- Molecular Formula: C16H10BrN
- Molecular Weight: 296.16
- Exact Mass: 294.99966
- Monoisotopic Mass: 294.99966
- IUPAC Name: 8-bromo-11H-benzo[a]carbazole
- SMILES: C1=CC=C2C(=C1)C=CC3=C2NC4=C3C=C(C=C4)Br
- Synonyms: 8-bromo-11H-benzo[a]carbazole, 21064-34-6, 8-bromo-11H-benzo[alpha]carbazole, 8-bromo-11H-benzo[|A]carbazole, SCHEMBL12249831
Application
8-Bromo-11H-benzo[a]carbazole serves as a key precursor in the synthesis of organic light-emitting diodes (OLEDs) and other optoelectronic materials due to its electron-rich carbazole core. Researchers utilize this compound to develop novel pharmaceuticals targeting kinase inhibition or DNA intercalation. In materials science, it’s employed to construct conjugated polymers with tunable luminescent properties for sensor applications.
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