Intermediates

3-Bromo-3-iodo-1,1-biphenyl

  • CAS No.187275-76-9
  • GradeIndustrial / Pharmaceutical
  • Availability● In Stock

High-purity 3-Bromo-3-iodo-1,1-biphenyl designed for advanced OLED material synthesis. Reliable supply with strict quality control for electronic chemical applications.

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Product Technical Details

Product Overview

3-Bromo-3-iodo-1,1-biphenyl represents a critical halogenated building block designed specifically for the advanced synthesis of organic light-emitting diode (OLED) materials. As a specialized intermediate, this compound facilitates precise cross-coupling reactions, enabling chemists to construct complex conjugated systems required for high-performance electronic displays. Our manufacturing process ensures exceptional batch-to-batch consistency, meeting the rigorous demands of the organic electronics industry.

The strategic placement of bromine and iodine substituents on the biphenyl core provides versatile reactivity profiles. This dual-halogen structure allows for selective functionalization, making it an indispensable precursor for developing novel emissive layers and charge transport materials. We prioritize purity levels that minimize impurities which could otherwise quench luminescence or reduce device longevity in final applications.

Key Specifications

ParameterValue
Chemical Name3-Bromo-3-iodo-1,1-biphenyl
CAS Number187275-76-9
Molecular FormulaC12H8BrI
Molecular Weight359.00 g/mol
AppearanceOff-white powder
Purity (Assay)≥98.0%
Packing Option25 kg/drum

Industrial Applications

This compound is primarily utilized in the research and production of next-generation display technologies. Its primary application lies in the synthesis of OLED intermediates, where it serves as a key substrate for palladium-catalyzed coupling reactions such as Suzuki-Miyaura or Stille couplings. The high reactivity of the iodine position allows for initial functionalization, while the bromine site can be reserved for subsequent steps, offering synthetic flexibility.

  • Manufacture of emissive layer materials for organic displays.
  • Synthesis of hole transport materials (HTM) and electron transport materials (ETM).
  • Development of phosphorescent and fluorescent organic compounds.
  • Custom synthesis projects requiring halogenated biphenyl scaffolds.

Quality Assurance And Storage

Quality control is paramount in electronic chemical manufacturing. Each batch undergoes stringent analysis using HPLC and NMR spectroscopy to verify structural integrity and purity levels. We provide comprehensive Certificates of Analysis (COA) with every shipment to ensure compliance with your internal quality standards. Proper handling is essential to maintain product stability during storage and transit.

Storage recommendations include keeping the material in a cool, ventilated environment away from direct sunlight and moisture. Containers should remain tightly sealed when not in use to prevent oxidation or contamination. Our packaging solutions are designed to protect the integrity of the powder during international transit, ensuring it arrives in optimal condition for your synthesis processes.

Why Choose Our Supply

As a dedicated manufacturer of specialty chemical intermediates, we combine decades of synthesis expertise with robust logistical capabilities. We understand the time-sensitive nature of electronic material production and offer reliable lead times. Our commitment to safety and regulatory compliance ensures a smooth procurement experience for global partners seeking reliable chemical inputs.

We offer flexible packaging options beyond standard drums to accommodate specific pilot plant or large-scale production needs. Our technical support team is available to assist with application queries, ensuring you achieve the best results in your final OLED device fabrication. Partner with us for a secure supply chain of high-performance chemical building blocks for the future of display technology.