Intermediates

[4-(N-Phenylanilino)phenyl]boronic Acid

  • CAS No.201802-67-7
  • GradeIndustrial / Pharmaceutical
  • Availability● In Stock

High purity [4-(N-Phenylanilino)phenyl]boronic acid designed for advanced OLED material synthesis. Reliable supply with comprehensive quality documentation.

Request Bulk Pricing

Product Technical Details

Product Overview

[4-(N-Phenylanilino)phenyl]boronic Acid represents a sophisticated organic building block essential for the development of next-generation organic electronic materials. This specialized boronic acid derivative features a diphenylamino group linked to a phenylboronic acid moiety, creating a unique electronic structure highly valued in the synthesis of hole-transport materials. Our manufacturing process ensures consistent molecular integrity, making it an ideal candidate for researchers and industrial producers focused on organic light-emitting diodes.

The chemical stability and reactivity of this compound allow for efficient cross-coupling reactions, particularly Suzuki-Miyaura couplings, which are fundamental in constructing complex conjugated systems. By maintaining strict control over impurities, we provide a product that supports high-performance device fabrication without compromising electrical properties.

Technical Specifications

ParameterValue
CAS Number201802-67-7
Molecular FormulaC18H16BNO2
Molecular Weight289.14 g/mol
AppearanceWhite powder
Assay≥99.0%
Melting Point110-115°C
Density1.24 g/cm3
Boiling Point484.5°C
Flash Point246.8°C

Industrial Applications

This intermediate is primarily utilized in the fabrication of organic light-emitting diode components. The diphenylamino structure contributes to excellent hole-transporting capabilities, which are critical for balancing charge injection in emissive layers. Manufacturers incorporate this boronic acid into various polymer and small molecule architectures to enhance device efficiency and longevity.

Beyond OLEDs, the compound serves as a versatile synthon in medicinal chemistry and advanced material science where aryl-aryl bond formation is required. Its compatibility with palladium-catalyzed reactions makes it a staple in modern organic synthesis laboratories aiming for high yield and selectivity.

Quality And Storage

We adhere to rigorous quality assurance protocols to guarantee batch-to-batch consistency. Each production lot undergoes comprehensive analysis, including HPLC and NMR spectroscopy, to verify structural correctness and purity levels. A Certificate of Analysis is provided with every shipment to support your regulatory compliance and internal QC processes.

  • Packaged in 25 kg drums for industrial scalability.
  • Custom packaging solutions available upon request.
  • Stored in a cool, ventilated environment to maintain stability.
  • Protected from moisture and direct sunlight during transit.

Proper storage conditions are vital for preserving the reactivity of boronic acids. We recommend keeping the container tightly closed when not in use to prevent hydration or oxidation. Our logistics team ensures safe global delivery, minimizing exposure to adverse conditions during shipping.

Why Choose Our Supply

As a dedicated manufacturer of fine chemical intermediates, we combine decades of synthesis expertise with modern production capabilities. Our commitment to technical support means you receive more than just a chemical; you gain a partner invested in your project success. Contact our sales team today for detailed specifications, bulk pricing, and sample availability.