9-(2-Bromophenyl)-9-phenyl-9H-fluorene
- CAS No.1998216-26-4
- GradeIndustrial / Pharmaceutical
- Availability● In Stock
High-purity 9-(2-Bromophenyl)-9-phenyl-9H-fluorene intermediate for OLED synthesis. Assay ≥98.0%, reliable global supply with full documentation.
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Product Overview
9-(2-Bromophenyl)-9-phenyl-9H-fluorene represents a critical building block in the synthesis of advanced organic light-emitting diode materials. This highly specialized fluorene derivative is engineered for precision cross-coupling reactions, serving as a foundational component for constructing complex phosphorescent and fluorescent emitter structures. Our manufacturing process ensures exceptional batch-to-batch consistency, which is paramount for electronic applications where impurity profiles can significantly impact device longevity and efficiency. As a key intermediate in the organic electronics sector, this compound facilitates the development of next-generation display technologies and solid-state lighting solutions.
Technical Specifications
We adhere to rigorous analytical standards to guarantee the integrity of every shipment. The material is supplied with a minimum assay of 98.0 percent, verified through high-performance liquid chromatography and nuclear magnetic resonance spectroscopy. The off-white solid appearance indicates high levels of purification, removing colored impurities that could interfere with optical properties. Strict quality control protocols are implemented at every stage of production to meet the demanding requirements of the OLED industry.
| Parameter | Value |
|---|---|
| Chemical Name | 9-(2-Bromophenyl)-9-phenyl-9H-fluorene |
| CAS Number | 1998216-26-4 |
| Molecular Formula | C25H17Br |
| Molecular Weight | 397.31 g/mol |
| Purity | ≥98.0% |
| Appearance | Off-white solid |
Applications in Organic Electronics
This intermediate is primarily utilized in the fabrication of OLED layers, including hole transport layers and emissive layers. The bromine substituent facilitates versatile functionalization via palladium-catalyzed coupling reactions such as Suzuki or Buchwald-Hartwig couplings. Key benefits include enhanced thermal stability, improved charge transport properties, and compatibility with vacuum deposition processes. Researchers and manufacturers rely on this precursor to develop high-efficiency emitting materials that deliver superior color purity and brightness.
- Ideal for synthesizing phosphorescent host materials
- Compatible with standard cross-coupling synthetic routes
- Supports development of stable blue and green emitters
- Ensures high quantum efficiency in final devices
Quality Assurance and Supply
As a global manufacturer, we provide comprehensive documentation including Certificates of Analysis and Material Safety Data Sheets. Our supply chain is optimized for reliability, offering flexible packaging solutions such as 25 kg drums or customized containers based on project requirements. Storage recommendations emphasize cool, ventilated environments to maintain chemical stability over extended periods. We are committed to supporting our partners with timely delivery and technical expertise to accelerate your research and production timelines.
