2-(3-Bromophenyl)triphenylene
- CAS No.1313514-53-2
- GradeIndustrial / Pharmaceutical
- Availability● In Stock
High-purity organic semiconductor intermediate designed for advanced OLED material synthesis and electronic chemical applications.
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Product Overview
2-(3-Bromophenyl)triphenylene represents a critical advanced organic intermediate designed specifically for the fabrication of high-performance organic light-emitting diode (OLED) materials. As a halogenated polycyclic aromatic hydrocarbon derivative, this compound serves as an essential building block in the synthesis of complex emissive layers and charge transport materials. Our manufacturing process ensures exceptional structural integrity and purity, catering to the rigorous demands of the electronic chemical industry.
The unique triphenylene core structure provides excellent thermal stability and charge mobility characteristics, making it highly desirable for next-generation display technologies. By incorporating the bromophenyl moiety at the 2-position, chemists gain a versatile reactive handle for further functionalization via palladium-catalyzed cross-coupling reactions. This flexibility allows for the precise tuning of electronic properties required in modern optoelectronic applications.
Technical Specifications
| Parameter | Value |
|---|---|
| CAS Number | 1313514-53-2 |
| Molecular Formula | C24H15Br |
| Molecular Weight | 383.28 g/mol |
| Appearance | White powder |
| Assay (Purity) | ≥99.0% |
| Boiling Point | 208ºC |
| Flash Point | 98ºC |
Industrial Applications
This specialty chemical is primarily utilized as a key precursor in the production of OLED functional materials. Its high purity profile minimizes impurity-related quenching effects, thereby enhancing the efficiency and lifespan of the final organic electronic devices. Researchers and process engineers value this intermediate for its consistency in batch-to-batch performance, which is vital for scaling up production from laboratory synthesis to commercial manufacturing.
Beyond OLEDs, derivatives of this compound may find utility in organic photovoltaics (OPV) and organic field-effect transistors (OFET) where stable aromatic systems are required. The robust chemical structure withstands rigorous processing conditions, ensuring reliability during device fabrication. It is an ideal candidate for companies seeking to develop high-efficiency lighting solutions and flexible display panels.
Quality Assurance and Handling
We adhere to strict quality control protocols to guarantee the integrity of every shipment. Each batch undergoes comprehensive analysis using high-performance liquid chromatography (HPLC) and nuclear magnetic resonance (NMR) spectroscopy to confirm identity and purity levels. A Certificate of Analysis (COA) is provided with every order to ensure full traceability and compliance with your internal quality standards.
- Packaged in 25 kg drums for secure industrial transport and storage.
- Custom packaging solutions available upon request to suit specific logistics needs.
- Storage recommendations include keeping the material in a cool, ventilated area away from direct sunlight.
- Strict safety data sheets (SDS) accompany all shipments to ensure safe handling procedures.
- Global shipping capabilities ensure timely delivery to research facilities and production plants.
Our commitment to excellence extends beyond product delivery. We offer technical support to assist with integration into your synthesis workflows, ensuring optimal results for your research and development projects. Partner with us for reliable supply chains and premium quality organic intermediates that drive innovation in the electronic materials sector.
