The Versatility of 2-Formylfuran-5-boronic Acid in Modern Synthesis
In the intricate world of chemical synthesis, certain molecules stand out for their versatility and indispensable role in creating complex structures. 2-Formylfuran-5-boronic acid (CAS 27329-70-0) is one such compound, increasingly recognized by procurement managers, R&D scientists, and formulators for its significant contributions to pharmaceutical intermediates and advanced organic materials. As a premier manufacturer and supplier, understanding its utility is paramount for anyone looking to buy or purchase high-quality chemical building blocks.
At its core, 2-Formylfuran-5-boronic acid is a bifunctional reagent. This means it possesses two distinct reactive sites: a formyl group (aldehyde) and a boronic acid moiety. This duality makes it an exceptionally valuable intermediate, particularly in the widely utilized Suzuki-Miyaura cross-coupling reaction. This palladium-catalyzed reaction is a cornerstone of modern organic chemistry, enabling the precise formation of carbon-carbon bonds, a critical step in the synthesis of pharmaceuticals, agrochemicals, and functional materials. When you search for 'how to buy 2-formylfuran-5-boronic acid for Suzuki reaction', you are looking for a reliable supplier capable of providing this specific reactivity.
The pharmaceutical industry heavily relies on such specialized building blocks. 2-Formylfuran-5-boronic acid serves as a key intermediate in the synthesis of a wide array of biologically active molecules. Its application extends to the creation of compounds targeting various diseases, including inhibitors for HIF-1, HIV-1 integrase, and epidermal growth factor receptors (EGFR). For R&D scientists, the availability of high-purity 2-Formylfuran-5-boronic acid directly impacts the success and efficiency of their drug discovery pipelines. The price of this intermediate is often a consideration for bulk purchases, and sourcing from a reputable manufacturer in China can offer significant cost advantages.
Beyond pharmaceuticals, this boronic acid plays a role in materials science. Its structure allows for the creation of extended π-conjugated systems, which are vital for developing advanced materials like those used in organic light-emitting diodes (OLEDs) and dye-sensitized solar cells. The demand for such materials continues to grow, making 2-Formylfuran-5-boronic acid a sought-after component for innovative technological solutions.
When procuring this chemical, it's essential to consider its properties. 2-Formylfuran-5-boronic acid is often described as air-sensitive and typically appears as a light grey or brown powder. Proper storage, usually under an inert atmosphere and at low temperatures (0-6°C or -20°C), is crucial to maintain its integrity and reactivity. This sensitivity highlights the importance of reliable packaging and handling by the supplier.
For businesses in need of this versatile compound, partnering with a trusted manufacturer and supplier in China is a strategic advantage. Companies offering 2-Formylfuran-5-boronic acid at competitive prices with guaranteed high purity (often exceeding 98%) are readily available. Whether you need a small quantity for initial research or a significant bulk order for production, investigating supplier capabilities, certifications, and commitment to quality is key. If you are looking to purchase 2-formylfuran-5-boronic acid, seeking a quote from established chemical manufacturers will ensure you receive a product that meets your exact specifications, supporting your innovation and production goals.
Perspectives & Insights
Logic Thinker AI
“The price of this intermediate is often a consideration for bulk purchases, and sourcing from a reputable manufacturer in China can offer significant cost advantages.”
Molecule Spark 2025
“Its structure allows for the creation of extended π-conjugated systems, which are vital for developing advanced materials like those used in organic light-emitting diodes (OLEDs) and dye-sensitized solar cells.”
Alpha Pioneer 01
“The demand for such materials continues to grow, making 2-Formylfuran-5-boronic acid a sought-after component for innovative technological solutions.”