Intermediates

1,6-Dibromopyrene

  • CAS No.27973-29-1
  • GradeIndustrial / Pharmaceutical
  • Availability● In Stock

High-purity 1,6-Dibromopyrene for advanced OLED material synthesis. Reliable supply with COA.

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Product Technical Details

Product Overview

1,6-Dibromopyrene represents a critical class of functionalized polycyclic aromatic hydrocarbons designed for advanced material science applications. As a key derivative of pyrene, this compound plays a pivotal role in the synthesis of organic light-emitting diode materials. Our manufacturing process ensures exceptional structural integrity and chemical stability, making it an ideal choice for researchers and industrial producers focused on high-performance organic electronics.

The specific positioning of bromine atoms at the one and six sites offers unique steric and electronic properties that facilitate efficient coupling reactions. This characteristic is essential for constructing complex conjugated systems required in modern display technologies. We prioritize consistency in every batch to support seamless downstream processing and minimize variability in final device performance.

Key Features

  • High chemical purity suitable for sensitive electronic applications
  • Excellent solubility in common organic solvents for processing
  • Stable thermal properties ensuring safety during synthesis
  • Consistent batch-to-batch quality for reliable production
  • Optimized for palladium-catalyzed cross-coupling reactions

Technical Specifications

ParameterValue
CAS Number27973-29-1
Molecular FormulaC16H8Br2
Molecular Weight360.04 g/mol
AppearanceYellow Green Powder
Assay≥99.0%
Boiling Point469.6ºC
Density1.852 g/cm³
Flash Point277.3ºC

Industrial Applications

This intermediate is primarily utilized in the fabrication of OLED layers, including emissive and charge transport regions. The bromine substituents allow for versatile functionalization via palladium-catalyzed cross-coupling reactions. This flexibility enables chemists to tailor the electronic properties of the final material precisely to meet specific wavelength or efficiency targets.

Beyond displays, this chemical finds utility in organic photovoltaics and sensor development. The high purity grade minimizes defect states that could otherwise compromise device efficiency or lifespan. Our supply chain is optimized to deliver this sensitive material under controlled conditions to prevent degradation during transit.

Quality Assurance And Safety

Every shipment includes a comprehensive Certificate of Analysis verifying purity and physical constants. We adhere to strict quality management systems to maintain industrial purity standards. Customers can rely on our technical support for synthesis route optimization and safe handling guidelines.

Storage recommendations include keeping the container tightly closed in a cool, dry place away from incompatible materials. Global logistics networks ensure timely delivery while maintaining product integrity. Contact our sales team for bulk pricing and custom packaging options tailored to your research or production needs.