The Crucial Role of 9-(3-Bromophenyl)-10-phenylanthracene in OLEDs
In the dynamic landscape of advanced electronics, Organic Light-Emitting Diodes (OLEDs) have revolutionized display technology. Their superior contrast, energy efficiency, and flexibility are partly thanks to specialized chemical compounds known as intermediates. Among these, 9-(3-Bromophenyl)-10-phenylanthracene (CAS: 1023674-80-7) stands out as a crucial component. As a leading manufacturer and supplier of high-quality chemical intermediates in China, we understand the vital role such materials play in enabling next-generation electronic devices. This article delves into the properties and significance of this compound for R&D scientists and procurement managers in the electronic materials sector.
Understanding 9-(3-Bromophenyl)-10-phenylanthracene
This compound, appearing as a white powder, possesses a molecular formula of C26H17Br and a molecular weight of approximately 409.32 g/mol. Its high purity, often exceeding 99.0%, is a non-negotiable requirement for its application in OLEDs. The precise chemical structure, featuring an anthracene core substituted with phenyl and bromophenyl groups, is meticulously designed to facilitate efficient charge transport and light emission within OLED devices. For businesses looking to buy this critical material, understanding its specifications is key to ensuring successful integration into their manufacturing processes.
Key Applications in OLED Technology
The primary application of 9-(3-Bromophenyl)-10-phenylanthracene lies in its function as an intermediate in the synthesis of host materials, emitters, or charge transport layers for OLEDs. Its molecular design contributes to the stability and performance of the final OLED device, impacting aspects such as brightness, color saturation, and operational lifetime. Researchers and product formulators often seek this compound when developing new display technologies that require enhanced efficiency and durability. Knowing where to source this material from a reliable manufacturer is crucial for consistent product development.
Why Source from China?
China has emerged as a global powerhouse in the chemical manufacturing industry, particularly for specialized intermediates like those used in OLED technology. Companies seeking to purchase 9-(3-Bromophenyl)-10-phenylanthracene benefit from the extensive manufacturing capabilities, competitive pricing, and rigorous quality control standards prevalent in the region. As a dedicated supplier in China, we leverage these advantages to provide our global clientele with high-purity OLED intermediates that meet stringent international specifications. Our commitment is to facilitate innovation by offering dependable access to essential chemical building blocks.
Procurement Considerations for B2B Buyers
For procurement managers and R&D scientists, sourcing chemical intermediates involves critical decisions regarding purity, availability, and supplier reliability. When considering 9-(3-Bromophenyl)-10-phenylanthracene, it’s important to work with suppliers who can provide detailed technical data and consistent batch-to-batch quality. We aim to be that partner, offering not only the product itself but also the assurance of a stable supply chain and excellent customer support. If you are looking for a competitive price for high-quality OLED intermediates, exploring options from established Chinese manufacturers is a strategic move.
In conclusion, 9-(3-Bromophenyl)-10-phenylanthracene is more than just a chemical formula; it's an enabler of advanced display technologies. By understanding its properties and the benefits of sourcing from reliable manufacturers and suppliers in China, businesses can ensure the success of their OLED development and production efforts. We invite you to connect with us to explore how our offerings can support your material needs.
Perspectives & Insights
Silicon Analyst 88
“For businesses looking to buy this critical material, understanding its specifications is key to ensuring successful integration into their manufacturing processes.”
Quantum Seeker Pro
“Key Applications in OLED TechnologyThe primary application of 9-(3-Bromophenyl)-10-phenylanthracene lies in its function as an intermediate in the synthesis of host materials, emitters, or charge transport layers for OLEDs.”
Bio Reader 7
“Its molecular design contributes to the stability and performance of the final OLED device, impacting aspects such as brightness, color saturation, and operational lifetime.”