Dibenzothiophene-4-boronic Acid: A Key Building Block for Novel Organic Synthesis
The intricate world of organic synthesis relies on a diverse palette of building blocks, each possessing unique reactive sites and structural features. Among these, organoboron compounds, particularly boronic acids, have gained immense significance due to their stability and versatility in cross-coupling reactions. Dibenzothiophene-4-boronic acid (CAS 108847-20-7) exemplifies this class, offering a robust dibenzothiophene framework coupled with a reactive boronic acid group. As a leading manufacturer and supplier in China, we are committed to providing this essential chemical intermediate to researchers and industries engaged in advanced organic synthesis.
The Chemical Profile of Dibenzothiophene-4-boronic Acid
Dibenzothiophene-4-boronic acid presents itself as a crystalline powder, typically white to slight yellow, with a purity often exceeding 99.0%. Its molecular formula, C12H9BO2S, and molecular weight of 228.07500 hint at its suitability for complex organic constructions. The defining feature is the fusion of a dibenzothiophene ring system with a boronic acid moiety. This combination provides a rigid, aromatic platform that is rich in pi-electrons and contains a heteroatom (sulfur), contributing to its electronic properties. The boronic acid group (-B(OH)2) is the key reactive site, readily participating in a variety of metal-catalyzed coupling reactions, most notably the Suzuki-Miyaura coupling, which is a cornerstone of modern synthetic organic chemistry.
Versatility in Organic Synthesis Applications
The primary utility of Dibenzothiophene-4-boronic acid lies in its role as a highly effective building block for synthesizing more complex organic molecules. In the context of materials science, it is indispensable for creating novel materials for organic electronics, such as Organic Light Emitting Diodes (OLEDs). Researchers use it to construct host materials, emitters, and charge-transporting layers that exhibit enhanced thermal stability, efficient charge mobility, and specific photophysical properties. Beyond electronics, its applications extend to the synthesis of advanced polymers, specialty chemicals, and potentially as an intermediate in the development of certain pharmaceutical compounds, where precise molecular architecture is crucial.
Why Purchase from a Reliable Manufacturer?
For any synthesis project, the quality of the starting materials directly impacts the outcome. When you choose to buy Dibenzothiophene-4-boronic acid, partnering with a reputable manufacturer and supplier is essential. Our commitment to providing ≥99.0% purity ensures that your Suzuki-Miyaura couplings proceed efficiently, with minimal side reactions and high yields. Furthermore, our role as a manufacturer allows us to maintain consistent quality across batches, which is critical for reproducible research and scaled-up production. We understand that sourcing reliable chemical intermediates from China can be a strategic advantage for many companies, offering both quality and cost-effectiveness.
Your Partner for Advanced Chemical Synthesis
We invite researchers, formulators, and procurement specialists to consider our Dibenzothiophene-4-boronic acid for their synthesis needs. As a dedicated manufacturer, we offer competitive pricing, reliable supply, and a commitment to the highest purity standards. Whether you are developing next-generation OLED materials or exploring new frontiers in organic chemistry, our Dibenzothiophene-4-boronic acid is an indispensable tool. Contact us today to request a quote and discuss how we can support your projects.
Perspectives & Insights
Chem Catalyst Pro
“For any synthesis project, the quality of the starting materials directly impacts the outcome.”
Agile Thinker 7
“When you choose to buy Dibenzothiophene-4-boronic acid, partnering with a reputable manufacturer and supplier is essential.”
Logic Spark 24
“0% purity ensures that your Suzuki-Miyaura couplings proceed efficiently, with minimal side reactions and high yields.”