CAS · 1097884-37-1
Product Overview
4-broMo-9-phenyl-9H-carbazole is a high-purity oled-materials supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Appearance: | white solid |
|---|---|
| Purity(HPLC): | 99%min |
Applications
1. Organic Electronics
Used as a building block in the synthesis of organic semiconductors, especially in:
OLEDs (Organic Light-Emitting Diodes)
OFETs (Organic Field-Effect Transistors)
Photovoltaic cells
The carbazole moiety is known for excellent charge-transporting properties and thermal stability.
2. Material Science
Applied in the development of hole-transport materials due to its high hole mobility and good film-forming properties.
The bromo substituent allows further chemical modifications via cross-coupling reactions, expanding molecular diversity.
3. Pharmaceutical and Chemical Research
Serves as an intermediate in the synthesis of pharmacologically active carbazole derivatives.
Used in the development of novel compounds for antitumor, antimicrobial, and antioxidant activities.
Benefits
🔄 Functionalization Versatility
The bromine atom at the 4-position provides a reactive handle for palladium-catalyzed cross-coupling reactions (e.g., Suzuki, Stille), enabling structural diversification.
🌟 Enhanced Electronic Properties
The phenyl substitution at the nitrogen enhances π-conjugation and molecular planarity, improving charge transport and light-emitting efficiency.
🔥 Thermal and Photostability
Carbazole-based compounds exhibit high thermal stability and photostability, essential for durable electronic devices.
⚙️ Synthetic Utility
Useful in constructing donor-acceptor systems and conjugated polymers for advanced material applications.
Conclusion
4-Bromo-9-phenyl-9H-carbazole (CAS 1097884-37-1) is a valuable intermediate widely used in organic electronics and materials science for the design and synthesis of high-performance semiconducting and light-emitting materials. Its combination of a carbazole core, phenyl substitution, and a reactive bromo group offers excellent opportunities for molecular tailoring, making it a critical compound for the development of next-generation optoelectronic devices and functional materials.
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