4-Butylphenylboronic Acid: A Key Intermediate for Pharmaceutical and OLED Synthesis

Discover the critical role of 4-Butylphenylboronic acid in advancing pharmaceutical research and OLED technology. As a leading manufacturer and supplier, we offer high-purity materials essential for complex organic synthesis and cutting-edge electronic applications.

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Advantages of Sourcing 4-Butylphenylboronic Acid

Exceptional Synthesis Versatility

Leverage the power of 4-Butylphenylboronic acid in palladium-catalyzed reactions like Suzuki-Miyaura cross-couplings. This enables efficient carbon-carbon bond formation, vital for constructing intricate molecular structures used in pharmaceutical synthesis.

Critical for OLED Technology

As a key intermediate for OLED applications, this boronic acid derivative contributes to the development of vibrant and energy-efficient display technologies. Partner with us to buy materials that drive innovation in material science.

Consistent Quality and Supply

We are a dedicated 4-Butylphenylboronic acid manufacturer, committed to providing consistent product quality and a reliable supply chain. Our commitment ensures you can purchase with confidence for your ongoing production and R&D requirements.

Key Application Areas

Pharmaceutical Intermediates

Essential for synthesizing active pharmaceutical ingredients (APIs) and complex drug molecules through cross-coupling reactions. Explore how our 4-Butylphenylboronic acid can streamline your drug development process and offer competitive pricing.

OLED Intermediates

Crucial building block for creating advanced organic light-emitting diode (OLED) materials, contributing to the performance and longevity of modern displays. Secure your supply from a leading manufacturer.

Organic Synthesis Reagent

A versatile reagent in academic and industrial research for various C-C bond forming reactions, enabling the creation of novel organic compounds.

Material Science Research

Used in the development of new functional materials, including liquid crystals, where its specific chemical properties are highly valued.