4-Bromo-4'-Iodo-1,1'-Biphenyl
- CAS No.105946-82-5
- GradeIndustrial / Pharmaceutical
- Availability● In Stock
High-purity 4-Bromo-4'-Iodo-1,1'-Biphenyl (CAS 105946-82-5) designed for advanced OLED synthesis. Reliable supply with comprehensive COA.
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Product Overview
4-Bromo-4'-Iodo-1,1'-Biphenyl represents a critical halogenated aromatic intermediate extensively utilized in the synthesis of advanced organic light-emitting diode (OLED) materials. As a specialized chemical entity, this compound serves as a versatile building block for constructing complex conjugated systems required in high-performance electronic displays. Our manufacturing process ensures exceptional batch-to-batch consistency, meeting the rigorous demands of the optoelectronic industry. The strategic placement of bromine and iodine substituents on the biphenyl backbone facilitates selective cross-coupling reactions, enabling chemists to precisely engineer molecular architectures. This selectivity is paramount when developing emissive layers or charge transport materials where electronic properties must be finely tuned. We prioritize purity levels that minimize impurities which could otherwise quench luminescence or degrade device longevity. Quality assurance is the cornerstone of our supply chain. Each production lot undergoes comprehensive analytical testing using state-of-the-art instrumentation such as HPLC and NMR to verify structural integrity and purity profiles. The molecular structure provides a stable platform for further derivatization, making it a preferred choice for research laboratories and industrial scale-up operations alike. Understanding the nuances of halogen reactivity is essential for optimizing yield in downstream synthesis steps.
Key Specifications
Quality assurance is the cornerstone of our supply chain. Each production lot undergoes comprehensive analytical testing using state-of-the-art instrumentation such as HPLC and NMR to verify structural integrity and purity profiles. The following table outlines the standard technical parameters for this material:
| Parameter | Value |
|---|---|
| CAS Number | 105946-82-5 |
| Molecular Formula | C12H8BrI |
| Molecular Weight | 359.00 g/mol |
| Appearance | White-yellow crystalline powder |
| Melting Point | 177ºC |
| Purity (Assay) | ≥98.0% |
Industrial Applications
This halogenated biphenyl derivative is primarily employed as a precursor in the fabrication of organic semiconductors. Its dual halogen functionality allows for sequential functionalization, making it invaluable for synthesizing hole transport materials and emissive dopants. Researchers and process engineers value this intermediate for its reactivity profile in palladium-catalyzed coupling reactions. The compound exhibits excellent solubility in common organic solvents, facilitating ease of handling during various synthetic procedures. It is particularly effective in Suzuki-Miyaura and Stille coupling reactions, which are fundamental to constructing the pi-conjugated systems found in modern display technologies. Our clients rely on this material to achieve high efficiency and color purity in their final electronic products. We support diverse application needs ranging from small-scale laboratory research to large-scale commercial production environments.
Storage and Handling
To maintain optimal stability, this product should be stored in a cool, well-ventilated environment away from direct sunlight and moisture. Proper sealing is recommended to prevent oxidation or contamination from atmospheric elements. We offer flexible packaging solutions, including standard 25 kg drums lined with protective materials to ensure safety during transit. Customization is available to suit specific logistical requirements and warehouse constraints. Our global distribution network ensures timely delivery while maintaining product integrity throughout the shipping process. Partnering with us provides access to reliable supply chains, comprehensive documentation including Certificates of Analysis (COA), and dedicated technical support for your synthesis projects. We are committed to supporting the advancement of organic electronics through the provision of high-quality chemical intermediates. Our team is ready to assist with technical inquiries regarding usage, safety data, and regulatory compliance standards. Furthermore, our quality control protocols include strict monitoring of heavy metals and residual solvents to ensure compliance with international safety standards. We maintain a robust inventory system to prevent stockouts and guarantee continuity of supply for long-term projects. Customer satisfaction is our priority, and we strive to build lasting partnerships based on trust and performance.
