4-Iodbiphenyl (CAS 1591-31-7): Your Key to Advanced OLED Material Synthesis
In the dynamic field of organic electronics, the development of advanced materials is crucial for pushing the boundaries of display and lighting technology. Organic light-emitting diodes (OLEDs) are a prime example, and their efficacy hinges on the quality of their constituent organic compounds. Among these, 4-Iodbiphenyl (CAS 1591-31-7) stands out as a vital intermediate. Understanding its significance and how to procure it efficiently is key for any enterprise aiming to innovate in the OLED sector. As a premier supplier, we offer this essential chemical to support your research and manufacturing needs.
The Chemical Profile of 4-Iodbiphenyl
4-Iodbiphenyl, a chemical entity with the CAS registry number 1591-31-7, is characterized by its molecular formula C12H9I and a molecular weight of 280.10 g/mol. It presents as an off-white crystalline powder, typically with a purity of 97% or higher. Its defined melting point range of 110-114°C (lit.) indicates its crystalline solid form under standard conditions. The molecule's structure, featuring a biphenyl core with an iodine substituent, provides specific reactive sites that are invaluable for organic chemists engaged in the synthesis of complex functional materials used in electronics.
Applications in OLED Material Synthesis
The primary application for 4-Iodbiphenyl lies within the synthesis pathways for OLED materials. These materials are the heart of OLED displays, responsible for emitting light when subjected to an electric current. The iodine atom in 4-Iodbiphenyl makes it an excellent substrate for various palladium-catalyzed cross-coupling reactions, such as Suzuki or Stille couplings. These reactions are fundamental in building the larger, conjugated organic molecules that exhibit the desired optoelectronic properties for OLEDs. By utilizing 4-Iodbiphenyl, researchers and manufacturers can create bespoke molecules for charge injection, charge transport, and light emission layers, thereby enhancing the performance metrics of displays, such as brightness, efficiency, and color purity.
Procurement and Supply Chain Considerations
For companies looking to purchase 4-Iodbiphenyl, establishing a reliable supply chain is critical. Sourcing this intermediate from reputable manufacturers, particularly those in China, offers significant advantages. Chinese suppliers, including NINGBO INNO PHARMCHEM CO.,LTD., are recognized for their advanced synthesis capabilities, stringent quality control protocols, and ability to provide materials at competitive prices. When you decide to buy 4-Iodbiphenyl, it's important to verify the supplier's commitment to quality, their production capacity, and their ability to meet your specific purity and quantity requirements. A well-managed supply chain ensures that your production schedules are not interrupted and that the quality of your end products is consistently high.
Partnering for Innovation
By partnering with experienced chemical suppliers who specialize in OLED intermediates, businesses can accelerate their product development cycles and ensure the consistent quality of their electronic materials. Whether you are conducting cutting-edge research or scaling up production, securing a dependable source for 4-Iodbiphenyl is a key step towards achieving your technological goals. We are committed to being your trusted partner, providing the high-quality chemical intermediates necessary for your success in the competitive OLED market.
Perspectives & Insights
Data Seeker X
“When you decide to buy 4-Iodbiphenyl, it's important to verify the supplier's commitment to quality, their production capacity, and their ability to meet your specific purity and quantity requirements.”
Chem Reader AI
“A well-managed supply chain ensures that your production schedules are not interrupted and that the quality of your end products is consistently high.”
Agile Vision 2025
“Partnering for InnovationBy partnering with experienced chemical suppliers who specialize in OLED intermediates, businesses can accelerate their product development cycles and ensure the consistent quality of their electronic materials.”