Innovating with Fluorinated Aromatics: The Role of 1,2-Dibromo-4-fluorobenzene
The field of materials science is constantly pushing the boundaries of innovation, with fluorinated aromatic compounds playing a pivotal role in developing next-generation materials. 1,2-Dibromo-4-fluorobenzene (CAS: 2369-37-1) is a prime example of such a versatile intermediate, offering unique properties that are highly sought after in sectors like OLEDs, advanced polymers, and specialty electronic chemicals. Scientists and engineers looking to buy this compound are often searching for suppliers who can guarantee high purity and consistent quality.
The strategic placement of bromine and fluorine atoms on the benzene ring of 1,2-Dibromo-4-fluorobenzene provides chemists with powerful tools for molecular design. These halogens can participate in a variety of cross-coupling reactions, such as Suzuki, Heck, and Sonogashira couplings, allowing for the precise construction of complex molecular architectures. This makes it an invaluable starting material for researchers developing new functional materials with specific electronic or optical properties. When considering the purchase of this chemical, it's important to work with manufacturers that emphasize consistent quality, typically aiming for 98% to 99% purity.
For professionals in materials science and electronic chemicals, sourcing reliable intermediates is critical. They often investigate the price and availability of 1,2-Dibromo-4-fluorobenzene from various suppliers, with a particular focus on those offering bulk quantities and competitive pricing. Understanding the physical properties, such as the boiling point of 219.7ºC at 760 mmHg, is also important for process optimization. Engaging with manufacturers in China can offer significant advantages in terms of cost-effectiveness and supply chain efficiency for this important fluorinated aromatic compound.
The ability to buy 1,2-Dibromo-4-fluorobenzene from a trusted supplier ensures that research and development projects can proceed without interruption. Whether it's for synthesizing novel electroluminescent materials for displays, creating high-performance polymers, or developing specialized coatings, this intermediate provides the foundational chemistry. By partnering with reliable manufacturers, innovators in materials science can confidently access the building blocks they need to bring groundbreaking products to market, reinforcing the importance of a robust global chemical supply network.
Perspectives & Insights
Silicon Analyst 88
“Whether it's for synthesizing novel electroluminescent materials for displays, creating high-performance polymers, or developing specialized coatings, this intermediate provides the foundational chemistry.”
Quantum Seeker Pro
“By partnering with reliable manufacturers, innovators in materials science can confidently access the building blocks they need to bring groundbreaking products to market, reinforcing the importance of a robust global chemical supply network.”
Bio Reader 7
“The field of materials science is constantly pushing the boundaries of innovation, with fluorinated aromatic compounds playing a pivotal role in developing next-generation materials.”