3-Bromo-5-fluorobenzaldehyde: A High-Purity Intermediate for Advanced Organic Synthesis

Discover the critical role of 3-Bromo-5-fluorobenzaldehyde (CAS 188813-02-7) as a key building block in pharmaceutical and fine chemical synthesis. Explore its properties, applications, and reliable sourcing options from leading manufacturers and suppliers.

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Key Advantages for Your Synthesis Needs

Strategic Halogenation for Enhanced Reactivity

The presence of both bromine and fluorine substituents on the benzaldehyde core significantly influences its electronic properties, making it a highly reactive and versatile synthon. This unique feature is critical for achieving regioselectivity in downstream synthetic steps.

Facilitating Complex Molecule Synthesis

3-Bromo-5-fluorobenzaldehyde is a cornerstone intermediate for constructing complex molecular architectures. Its aldehyde group readily participates in condensation reactions, while the bromine atom serves as an excellent handle for palladium-catalyzed cross-coupling reactions like Suzuki-Miyaura, enabling efficient C-C bond formation.

Cost-Effective Sourcing from China

Partner with reliable manufacturers and suppliers in China to secure high-quality 3-Bromo-5-fluorobenzaldehyde at competitive prices. Bulk purchasing options and efficient supply chain management ensure your production needs are met consistently.

Diverse Applications in Chemical Industries

Pharmaceutical Development

Crucial for synthesizing pharmaceutical intermediates, including those for antifungal agents and kinase inhibitors. Its structure is foundational in creating sophisticated drug candidates for various therapeutic areas.

Agrochemical Synthesis

Serves as a key building block in the development of advanced agrochemicals, contributing to the creation of new crop protection agents and pest control solutions.

Fine Chemical Manufacturing

Utilized extensively in the fine chemical industry for the synthesis of specialty chemicals and complex organic molecules, catering to diverse research and industrial demands.

Materials Science Research

Its properties make it a valuable precursor in materials science, particularly in the development of novel liquid crystals and intermediates for OLEDs, showcasing its broader applicability.