CAS · 937082-81-0
Product Overview
9-(4-Bromophenyl)-9-phenylfluorene 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: | powder powder |
|---|---|
| Purity(HPLC): | 99%min |
| MP: | 151.0 ~ 153.0 deg.C |
Applications
1. Organic Electronic Materials
This compound is commonly used as a building block or intermediate in the synthesis of materials for organic electronic devices, including:
OLEDs (Organic Light-Emitting Diodes)
OFETs (Organic Field-Effect Transistors)
OPVs (Organic Photovoltaics)
Its rigid fluorene backbone and substitution with aryl groups improve thermal stability and charge transport properties.
2. Ligand in Coordination Chemistry
The bromo-functionalized aryl group can undergo further cross-coupling reactions (like Suzuki-Miyaura or Stille coupling), enabling the synthesis of more complex ligands for coordination compounds and organometallic catalysts.
3. Pharmaceutical and Material Science Intermediate
Used in research environments for the development of advanced pharmaceutical scaffolds or functionalized polymers due to its aromatic, sterically hindered structure.
Benefits
1. Functional Group Versatility
The bromine atom allows for downstream functionalization through palladium-catalyzed cross-coupling, offering customization for various end applications.
2. Thermal and Photochemical Stability
The fluorene core provides rigid π-conjugated systems with high glass transition temperatures, ideal for high-performance optoelectronic materials.
3. Enhanced Electronic Properties
The electron-rich fluorene unit contributes to efficient charge transport and good light-emitting behavior, especially in OLED applications.
4. Synthetic Utility
It serves as a key intermediate for constructing donor-acceptor systems or polymeric structures, essential for organic electronics and light-harvesting systems.
Conclusion
9-(4-Bromophenyl)-9-phenylfluorene (CAS 937082-81-0) is a valuable specialty compound in the field of organic electronics and material science. Its combination of a rigid, thermally stable fluorene core with a reactive bromophenyl group enables it to be a key intermediate in the synthesis of high-performance materials for optoelectronic applications. Its versatility, functionalization potential, and favorable electronic characteristics make it a preferred choice in advanced material design and research.
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