High Purity p-(4-Propylcyclohexyl)phenylboronic Acid: Your Key Intermediate for Advanced Materials and Pharmaceuticals

Discover the exceptional properties of p-(4-Propylcyclohexyl)phenylboronic acid, a premium boronic acid derivative essential for cutting-edge Suzuki-Miyaura cross-coupling reactions. Ideal for synthesizing advanced materials and complex pharmaceutical intermediates, this product offers unparalleled quality and performance. Contact us today for a quote and samples from a trusted manufacturer.

Get a Quote & Sample

Key Advantages of Our Boronic Acid Derivative

Exceptional Performance in Cross-Coupling

Leverage the unique cyclohexyl-propyl structure for exceptional steric control in Suzuki-Miyaura couplings, enabling the synthesis of intricate molecular architectures. This makes it a sought-after pharmaceutical intermediate and material science building block.

Enhanced Thermal Stability

The rigid cyclohexyl ring contributes to superior thermal stability, ensuring process reliability and product integrity in demanding applications. As your trusted supplier, we ensure this stability is maintained throughout our supply chain.

Versatile Application in Advanced Synthesis

Ideal for creating complex liquid crystal compounds, OLED materials, and chiral pharmaceutical intermediates, this boronic acid derivative empowers innovation in cutting-edge fields. Buy with confidence from a manufacturer committed to quality.

Applications Driving Innovation

Liquid Crystal Synthesis

Utilize this high-purity intermediate to develop advanced liquid crystal materials for display technologies, demanding precise molecular structures and exceptional stability.

OLED Material Development

Incorporate this boronic acid derivative into the synthesis of next-generation OLED materials, contributing to enhanced device performance and longevity.

Pharmaceutical Intermediates

As a key pharmaceutical intermediate, it plays a vital role in the synthesis of complex active pharmaceutical ingredients (APIs), ensuring high purity and stereoselectivity.

Specialty Chemical Synthesis

Explore its utility in the broader field of specialty chemicals where precise structural control and high purity are paramount for end-product efficacy.