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Specifications
| Appearance: | Off-white solid |
| Purity: | 98% min |
Applications
1. Organic Semiconductors and Electronics
Acts as a π-conjugated system for use in:
Organic Light Emitting Diodes (OLEDs)
Organic Field-Effect Transistors (OFETs)
Organic Photovoltaics (OPVs)
Offers high charge mobility and stability due to the extended aromatic system.
2. Material Science Research
Used in research and development of photoconductive and electroluminescent materials.
The phenyl and carbazole moieties improve thermal stability and molecular packing, which are crucial for device performance.
3. Ligand Design and Coordination Chemistry
The nitrogen atoms in the fused ring can serve as coordination sites for transition metals.
Utilized in the design of functional organometallic complexes for catalysis or sensing applications.
4. Pharmaceutical and Bioactive Molecule Research
Carbazole derivatives often exhibit anticancer, antimicrobial, and antioxidant properties.
This molecule may be used as a lead scaffold in early-stage drug discovery or SAR (Structure–Activity Relationship) studies.
Benefits
✅ Extended Conjugation: Provides excellent electronic delocalization, useful in optoelectronic applications.
✅ Thermal and Photostability: The indolo[3,2-a]carbazole skeleton enhances resistance to thermal and photochemical degradation.
✅ Modifiable Structure: The phenyl and carbazole rings allow for further substitution or functionalization, enabling custom property tuning.
✅ Versatility in Research: Its unique structure makes it valuable for both electronic material development and chemical biology exploration.
Conclusion
12-Phenyl-5,12-dihydroindolo[3,2-a]carbazole (CAS 1346571-68-3) is a highly conjugated aromatic compound with broad utility in the organic electronics, material science, and pharmaceutical R&D sectors. Its rigid, stable structure and electronic versatility make it a promising candidate for advanced functional materials and bioactive compound development.

