High Purity 10-(4-Bromophenyl)-10H-phenoxazine Supplier | Chemical Intermediate for OLEDs & Materials Science

Discover a premier supplier of 10-(4-Bromophenyl)-10H-phenoxazine, a critical intermediate for advanced organic electronics. We provide high-purity materials essential for cutting-edge OLED and materials science applications. Get a competitive quote from our experienced manufacturer.

Get a Quote & Sample

Advantages of Partnering with Us for Your Chemical Needs

Uncompromising Quality Assurance

Our 10-(4-Bromophenyl)-10H-phenoxazine undergoes rigorous quality control, guaranteeing ≥98% purity to meet the stringent demands of advanced electronic material manufacturing.

Expertise in Organic Synthesis

Leveraging advanced synthetic methodologies, including Ullmann coupling and Buchwald-Hartwig amination, we produce this crucial phenoxazine derivative efficiently and at scale.

Global Supply Chain Reliability

As a dedicated supplier, we ensure stable availability and timely delivery of this key chemical intermediate to researchers and manufacturers worldwide, supporting your production schedules.

Key Applications of 10-(4-Bromophenyl)-10H-phenoxazine

OLED and PLED Materials

This phenoxazine derivative serves as a crucial host material and electron-transport layer component in Organic Light-Emitting Diodes (OLEDs) and Polymer Light-Emitting Diodes (PLEDs), enhancing device efficiency and stability.

Advanced Materials Science

Its versatile chemical structure makes it an ideal building block for synthesizing novel functional materials, photoluminescent compounds, and advanced organic semiconductors used in various research and development projects.

Chemical Synthesis Intermediate

The presence of the bromine atom allows for further derivatization through cross-coupling reactions, enabling the creation of more complex molecular architectures for specialized applications.

Research and Development

Essential for academic and industrial R&D in optoelectronics, this compound supports the exploration of new materials for solar cells, transistors, and other electronic devices.