2-Bromophenanthrene
- CAS No.62162-97-4
- GradeIndustrial / Pharmaceutical
- Availability● In Stock
High-purity 2-Bromophenanthrene (CAS 62162-97-4) designed for advanced OLED material synthesis. Available in bulk with strict quality control and global shipping.
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Product Overview
2-Bromophenanthrene is a specialized halogenated polycyclic aromatic hydrocarbon primarily utilized as a critical building block in the synthesis of advanced organic electronic materials. As a key intermediate, this compound plays an indispensable role in the development of organic light-emitting diodes (OLEDs) and other optoelectronic applications. Our manufacturing process ensures exceptional chemical stability and consistency, making it an ideal choice for research laboratories and industrial production facilities focused on next-generation display technologies.
We understand the stringent requirements of the electronic chemical sector. Therefore, every batch of 2-Bromophenanthrene undergoes rigorous quality assurance testing to guarantee high purity levels suitable for sensitive synthesis routes. Our commitment to excellence positions us as a reliable partner for companies seeking scalable solutions for organic semiconductor production.
Technical Specifications
| Parameter | Value |
|---|---|
| Chemical Name | 2-Bromophenanthrene |
| CAS Number | 62162-97-4 |
| Molecular Formula | C14H9Br |
| Molecular Weight | 257.12500 |
| Appearance | White powder |
| Assay (Purity) | ≥99.0% |
| Packing | 25 kg/drum or customized |
Physical and Chemical Properties
This compound exhibits distinct physical characteristics that facilitate its handling and integration into various chemical processes. With a molecular weight of approximately 257.13 g/mol, it possesses a density of 1.479 g/cm3, indicating a compact molecular structure typical of brominated aromatic systems. The boiling point is recorded at 389.679°C, reflecting high thermal stability which is crucial during high-temperature synthesis steps. Additionally, the index of refraction stands at 1.733, a property relevant for optical applications where light transmission and manipulation are key factors.
The white powder appearance signifies a high degree of crystallinity and lack of significant colored impurities, which is essential for preventing unwanted absorption in final electronic devices. These physical properties collectively ensure that the material performs predictably under standard reaction conditions used in organic synthesis.
Industrial Applications
The primary application of 2-Bromophenanthrene lies in the field of organic electronics, specifically serving as a precursor for OLED intermediates. It is frequently employed in cross-coupling reactions, such as Suzuki or Heck couplings, to construct larger conjugated systems required for emissive layers in display panels. Beyond OLEDs, this chemical is valuable in the research and development of organic photovoltaics and organic field-effect transistors.
- Essential building block for organic light-emitting diode materials.
- Used in the synthesis of complex polycyclic aromatic hydrocarbons.
- Supports research in organic semiconductors and photovoltaics.
- Compatible with various metal-catalyzed coupling reactions.
Quality Assurance and Storage
To maintain the integrity of 2-Bromophenanthrene, proper storage conditions are imperative. The product should be stored in a cool, ventilated place away from direct sunlight and moisture. We recommend keeping the containers tightly sealed when not in use to prevent oxidation or contamination. Our packaging options include standard 25 kg drums, with flexibility to accommodate specific customer requirements for bulk orders.
Each shipment is accompanied by a Certificate of Analysis (COA) verifying the assay and physical properties. Our global logistics network ensures timely delivery while maintaining compliance with international chemical shipping regulations. For technical inquiries or custom synthesis requests, our expert support team is available to assist with formulation guidance and process optimization.
