High Purity 9-Bromo-10-(9-phenanthryl)anthracene CAS 845457-53-6 Manufacturer | OLED Intermediate Supplier

As a premier manufacturer and supplier of advanced fine chemicals, we specialize in providing high-purity 9-Bromo-10-(9-phenanthryl)anthracene (CAS 845457-53-6). This critical intermediate is essential for the development of next-generation Organic Light-Emitting Diodes (OLEDs) and other organic electronic devices. Our commitment to quality and innovation ensures you receive materials that meet the stringent demands of cutting-edge research and manufacturing. We are your trusted source for competitive pricing and reliable supply.

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Key Advantages of Partnering with Our Manufacturing Team

Uncompromising Purity Standards

Our manufacturing processes focus on achieving and maintaining a purity level of 97% min for 9-Bromo-10-(9-phenanthryl)anthracene, a crucial factor for the performance and longevity of OLED devices. We understand the importance of consistent quality for R&D scientists and product formulators.

Expertise in OLED Intermediates

As a specialized supplier, we possess deep knowledge of the electronic chemicals market. We ensure that our 9-Bromo-10-(9-phenanthryl)anthracene is precisely synthesized to serve as an effective building block for novel OLED materials, making us a valuable partner for your procurement needs.

Competitive Pricing and Bulk Supply

We offer competitive pricing for 9-Bromo-10-(9-phenanthryl)anthracene, available in various quantities from research samples to bulk orders. As a direct manufacturer, we can provide cost-effective solutions for purchasing this essential chemical intermediate.

Applications of 9-Bromo-10-(9-phenanthryl)anthracene

OLED Technology

This compound serves as a fundamental building block in the synthesis of emissive or charge-transporting layers for Organic Light-Emitting Diodes (OLEDs), enabling vibrant and energy-efficient displays.

Organic Electronics

Its unique structure makes it valuable for developing other organic electronic devices, including organic field-effect transistors (OFETs) and organic photovoltaics (OPVs).

Advanced Material Synthesis

As a fine chemical intermediate, it is utilized in complex synthesis routes to create new materials with tailored electronic and optical properties, sought after by R&D scientists.

Research and Development

Essential for academic and industrial research in photophysics, materials science, and novel chemical synthesis, providing a reliable precursor for innovative projects.