Dibenzo[b,d]thiophene-4,6-diboronic acid
- CAS No.1266231-16-2
- GradeIndustrial / Pharmaceutical
- Availability● In Stock
High-purity Dibenzo[b,d]thiophene-4,6-diboronic acid designed for advanced OLED material synthesis. Reliable supply with ≥99.0% assay and comprehensive quality documentation.
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Product Overview
Dibenzo[b,d]thiophene-4,6-diboronic acid represents a critical building block in the realm of organic electronics, specifically tailored for the synthesis of high-performance OLED materials. As a specialized boronic acid derivative, this compound facilitates efficient cross-coupling reactions, enabling the construction of complex conjugated systems essential for modern display technologies. Our manufacturing process ensures exceptional batch-to-batch consistency, meeting the rigorous demands of electronic material scientists and industrial producers.
The molecular structure features a dibenzothiophene core functionalized with boronic acid groups at the 4 and 6 positions. This specific substitution pattern is highly valued for its reactivity in Suzuki-Miyaura coupling, allowing for the precise assembly of emissive layers and charge transport materials. By utilizing this intermediate, researchers and engineers can achieve superior color purity and enhanced device longevity in organic light-emitting diodes.
Technical Specifications
| Parameter | Specification |
|---|---|
| Chemical Name | Dibenzo[b,d]thiophene-4,6-diboronic acid |
| CAS Number | 1266231-16-2 |
| Molecular Formula | C12H10B2O4S |
| Molecular Weight | 271.89 g/mol |
| Appearance | White powder |
| Assay (Purity) | ≥99.0% |
| Packing | 25 kg/drum or customized |
Industrial Applications
This compound serves as a foundational precursor in the fabrication of next-generation display panels. Its primary application lies in the development of phosphorescent and fluorescent emitters used in OLED screens for smartphones, televisions, and lighting solutions. The high purity level minimizes impurity-related quenching effects, thereby maximizing the efficiency of the final electronic device.
Beyond display technology, this intermediate is utilized in the synthesis of organic semiconductors and photovoltaic materials. The robustness of the dibenzothiophene skeleton provides thermal stability and excellent charge mobility, which are crucial parameters for maintaining performance under operational stress. Manufacturers relying on this material benefit from streamlined synthesis routes that reduce waste and improve overall yield.
Quality Assurance And Logistics
We adhere to strict quality control protocols throughout the production cycle. Each batch undergoes comprehensive analysis using HPLC and NMR spectroscopy to verify structural integrity and purity levels. A Certificate of Analysis (COA) is provided with every shipment, ensuring full transparency and compliance with international standards. Our facility is equipped to handle large-scale orders while maintaining the precision required for fine chemical production.
- Consistent supply chain management for uninterrupted production.
- Flexible packaging options to suit specific laboratory or plant needs.
- Technical support available for synthesis optimization and troubleshooting.
- Global shipping capabilities with secure handling protocols.
Storage And Handling
To maintain optimal stability, Dibenzo[b,d]thiophene-4,6-diboronic acid should be stored in a cool, ventilated environment away from direct sunlight and moisture. Proper sealing of containers is essential to prevent hydrolysis of the boronic acid groups. When handled according to standard safety guidelines, this material offers a safe and reliable solution for advanced organic synthesis projects. We recommend consulting the Safety Data Sheet (SDS) for detailed handling instructions and regulatory information before use.
