| Product name | 4-BROMO-N-(4-BROMOPHENYL)-N-PHENYLBENZEN AMINE |
| Synonym | 4,4′-DIBROMOTRIPHENYLAMINE; N,N-BIS(P-BROMOPHENYL)ANILINE; Dibromotriphenylamine; 4,4”-DIBROMOTRIPHENYLAMINE98+%; N,N-Bis(4-bromophenyl)aniline; 4,4′-(PhChemicalbookenylimino)bis(1-bromobenzene); Bis(4-bromophenyl)phenylamine; Phenylbis(4-bromophenyl)amine; N,N-Diphenyl-4,4′-dibromoaniline |
| CAS NO. | 81090-53-1 |
| Appearance | Light yellow to off-white crystalline powder |
| Purity | 99% Min |
| MF | C₁₈H₁₃Br₂N |
| MW | 403.11 g/mol |
| Structural formula | ![]() |
| Related categories | Organic Intermediates; Photoelectric Materials |
| Transport Information | Non-hazardous materials |
| HS Code | 29214990 |
| Product Manager Email | sophia@coreychem.com |
This compound primarily serves as a key organic synthesis intermediate and precursor for optoelectronic materials, with applications in the following areas:
Optoelectronic Functional Materials
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OLED/Hole-Transporting Materials: As a core scaffold, it is used in the synthesis of hole-transporting materials, host materials, or thermally activated delayed fluorescence (TADF) materials, widely applied in organic light-emitting diodes for displays and lighting.
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Organic Semiconductors: Used to construct conjugated polymers or small-molecule semiconductors for applications in organic field-effect transistors and solar cells.
Organic Synthesis Intermediate
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Suzuki / C–C Coupling Reactions: The two bromine atoms in the molecule serve as highly reactive sites, enabling efficient introduction of aryl, heteroaryl, or amino groups via palladium-catalyzed coupling reactions (such as Suzuki or Buchwald–Hartwig reactions). It acts as an important “building block” for constructing complex conjugated molecules.
Other Applications
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Used in the synthesis of dyes, pigments, or as sensitive components in photoelectrochemical sensors.
Key Features: Combines the hole-transport properties of triphenylamine with the high reactivity of bromine atoms, making it a bridging compound that connects basic chemical raw materials to high-performance functional materials.
Contact information:
Contact: Sophia Li
Email: sophia@coreychem.com
