High-Purity 3-Cyano-4-fluorophenylboronic Acid: Your Key Pharmaceutical Intermediate

Discover the essential building block for advanced organic synthesis and pharmaceutical development. Our high-purity 3-Cyano-4-fluorophenylboronic acid is manufactured to exacting standards, offering unparalleled reliability for your critical research and production needs. Explore its applications and learn why sourcing from a trusted supplier in China ensures quality and cost-effectiveness.

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Advantages of Partnering with Our Chemical Supply

Uncompromising Quality Assurance

Our commitment to quality means every batch of 3-Cyano-4-fluorophenylboronic acid meets stringent purity standards (≥99%). We understand the critical role of reliable intermediates in pharmaceutical research and organic synthesis, and our quality control processes reflect this.

Expert Sourcing and Manufacturing

Leverage our expertise as a dedicated manufacturer and supplier. We offer competitive pricing and consistent availability for this essential fine chemical, ensuring your projects stay on track. We are your trusted source for boronic acids and related intermediates.

Tailored Supply Chain Solutions

We provide flexible packaging and shipping options to meet your specific needs. Whether you need small R&D quantities or larger industrial batches, our team is ready to facilitate your purchase and delivery of this key fine chemical.

Diverse Applications in Modern Chemistry

Pharmaceutical Development

Utilize 3-Cyano-4-fluorophenylboronic acid as a critical intermediate in synthesizing novel drug candidates, including anti-cancer agents and other therapeutic compounds. Its structure is ideal for targeted modifications.

Advanced Organic Synthesis

Employ this boronic acid in Suzuki-Miyaura cross-coupling reactions to efficiently build complex molecular architectures for agrochemicals, specialty polymers, and advanced materials.

Medicinal Chemistry Research

Researchers in medicinal chemistry benefit from its unique electronic properties and reactivity, aiding in the discovery and optimization of new biologically active molecules.

Materials Science Innovation

Explore its use in creating advanced materials with specific electronic or optical properties, contributing to innovations in electronics, sensors, and functional polymers.