High-Purity Boronic Acid Derivative for Advanced Chemical Synthesis | Manufacturer & Supplier

Source high-purity 7-Bromo-9,9-dimethylfluoren-2-yl-boronic acid (CAS 1213768-48-9) from a trusted manufacturer and supplier in China. Essential for pharmaceutical intermediates and electronic chemicals, this boronic acid derivative is vital for Suzuki coupling reactions and advanced material development. Secure your supply of this critical building block for innovative synthesis.

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Advantages of Partnering with Our Boronic Acid Supplier

Exceptional Purity for Reliable Synthesis

Our 7-Bromo-9,9-dimethylfluoren-2-yl-boronic acid is manufactured to exacting standards, ensuring high purity critical for sensitive Suzuki coupling reactions and advanced material synthesis. Trust our quality to guarantee reproducible results in your applications.

Critical Intermediate for Key Industries

As a vital component for pharmaceutical intermediates and electronic chemicals, this boronic acid derivative empowers innovation in drug discovery and advanced material science. Purchase this essential building block to drive your research and product development forward.

Competitive Pricing and Stable Supply

We offer competitive pricing on high-purity boronic acid derivatives, ensuring cost-effectiveness for your synthesis projects. As a dedicated manufacturer and supplier, we guarantee a stable supply chain to meet your production demands, providing you with the necessary raw materials on time.

Key Applications for Boronic Acid Derivatives

Pharmaceutical Synthesis

Utilize this high-purity boronic acid derivative as a key intermediate in the synthesis of complex pharmaceutical compounds, ensuring efficacy and quality in drug development.

Electronic Materials Development

Incorporate this specialized chemical into the creation of advanced electronic materials, leveraging its unique properties for next-generation devices.

Organic Chemistry Research

Employ this boronic acid in cutting-edge organic synthesis research, enabling novel reaction pathways and the creation of new molecular architectures.

Advanced Material Science

Source this essential building block to explore and develop novel materials with tailored properties, pushing the boundaries of material innovation.