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Handan City,Hebei Province, China
Hebei Huaqing Optoelectronics focuses on the research and production of OLED materials.
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*The following content is generated by AI and is for reference only.
1-Bromo-6-chloro-9H-carbazole is a highly functionalized heterocyclic compound widely utilized in the pharmaceutical and materials science sectors. With the molecular formula C₁₂H₇BrClN and a molecular weight of approximately 284.55 g/mol, this molecule features a carbazole core substituted with both bromine and chlorine atoms at specific positions, enhancing its reactivity for further chemical transformations. The CAS Registry Number for this substance is 137200-59-4, serving as its unique identifier in global chemical databases and regulatory filings.
The primary utility of 1-bromo-6-chloro-9H-carbazole lies in its role as a versatile synthetic intermediate. Its dual halogen substitution allows chemists to selectively engage in cross-coupling reactions, such as Suzuki-Miyaura or Buchwald-Hartwig couplings, to construct complex organic architectures. This specificity makes it an invaluable building block for synthesizing advanced organic light-emitting diodes (OLEDs), where the carbazole moiety contributes excellent hole-transport properties and thermal stability. Furthermore, derivatives synthesized from this precursor are frequently investigated for their potential as active ingredients in agrochemicals, including fungicides and insecticides, due to the biological activity often associated with halogenated aromatic systems. In medicinal chemistry, the scaffold serves as a starting point for developing novel kinase inhibitors and other bioactive small molecules targeting various diseases.
From a safety perspective, like many organohalides, it should be handled with appropriate personal protective equipment in a well-ventilated environment to avoid inhalation or skin contact. Storage conditions typically require keeping the material in a cool, dry place away from strong oxidizers and moisture. As research into next-generation optoelectronic materials and targeted therapeutics accelerates, the demand for high-purity intermediates like 1-bromo-6-chloro-9H-carbazole continues to grow. Its ability to facilitate precise structural modifications ensures its enduring relevance in the development of innovative technologies across multiple industrial domains.