9-Bromo-10-(1-naphthyl)anthracene: A High-Purity Intermediate for Advanced OLED Displays

Discover the pivotal role of 9-Bromo-10-(1-naphthyl)anthracene (CAS: 400607-04-7) in shaping the future of display technology. As a leading manufacturer and supplier of specialized organic chemicals, we provide this critical OLED intermediate, ensuring exceptional purity and performance for your cutting-edge applications. Inquire today to secure your supply and explore its potential in your next project.

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Key Advantages of Our OLED Intermediate

Exceptional Purity for Optimal Device Performance

Our 9-Bromo-10-(1-naphthyl)anthracene (CAS: 400607-04-7) boasts a minimum purity of 97%, crucial for achieving superior luminescence, color purity, and operational stability in OLED devices. Trust our manufacturing capabilities to deliver consistent quality for your demanding applications.

Versatile Intermediate for Material Innovation

Leverage this compound as a key intermediate in organic synthesis. Its unique anthracene and naphthalene structure, coupled with bromine substitution, makes it an ideal precursor for developing next-generation emissive layers, charge transport materials, and other advanced organic electronic components. Explore purchase options with our expert team.

Ensured Thermal Stability for Durable Devices

The inherent aromatic structure of 9-Bromo-10-(1-naphthyl)anthracene contributes to excellent thermal stability, a vital characteristic for OLEDs operating under demanding conditions. This leads to reduced degradation and extended device lifespan, making it a preferred choice for manufacturers seeking reliability. Buy in bulk for your production needs.

Applications in Advanced Electronic Materials

OLED Emitters and Host Materials

This intermediate is instrumental in synthesizing high-efficiency blue and green light-emitting materials and host materials for OLED displays, enabling vivid and precise color reproduction.

Charge Transport Layers

Its electronic properties make it suitable for developing hole and electron transport materials, optimizing charge injection and transport within OLED devices for improved performance.

Organic Photovoltaics (OPVs)

Beyond OLEDs, this compound can be utilized in the research and development of organic solar cells, contributing to advancements in renewable energy technologies.

Specialty Organic Synthesis

As a versatile building block, it finds applications in various complex organic synthesis pathways for novel functional materials and pharmaceuticals. Contact us to discuss your specific requirements and purchase options.