10-Bromo-2-phenyl-9-(4-phenylphenyl)anthracene
- CAS No.1195975-03-1
- GradeIndustrial / Pharmaceutical
- Availability● In Stock
High-purity 10-Bromo-2-phenyl-9-(4-phenylphenyl)anthracene (CAS 1195975-03-1) designed for advanced OLED material synthesis. Available in bulk quantities with comprehensive COA.
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Product Overview
10-Bromo-2-phenyl-9-(4-phenylphenyl)anthracene is a specialized organic intermediate engineered for the fabrication of high-performance organic light-emitting diode (OLED) materials. This anthracene derivative serves as a critical building block in the synthesis of efficient emissive layers and host materials, contributing to enhanced luminosity and stability in next-generation display technologies. Our manufacturing process ensures exceptional chemical consistency, making it an ideal choice for research and industrial-scale production.
As a key precursor in the organic semiconductor industry, this compound exhibits superior thermal stability and optimal electronic properties. The strategic placement of the bromo and phenyl groups on the anthracene core facilitates versatile cross-coupling reactions, enabling chemists to construct complex molecular architectures required for advanced optoelectronic applications. We prioritize rigorous quality control to meet the demanding specifications of the global electronics supply chain.
Technical Specifications
| Parameter | Specification |
|---|---|
| Chemical Name | 10-Bromo-2-phenyl-9-(4-phenylphenyl)anthracene |
| CAS Number | 1195975-03-1 |
| Molecular Formula | C32H21Br |
| Molecular Weight | 485.41 g/mol |
| Appearance | White powder |
| Purity (Assay) | ≥99.0% |
| Packaging | 25 kg/drum or custom |
| Storage Conditions | Cool, ventilated place |
Industrial Applications
This intermediate is primarily utilized in the development of OLED materials, including host materials for phosphorescent and fluorescent emitters. Its structural properties support high charge carrier mobility, which is essential for reducing operating voltages and improving power efficiency in display panels. Manufacturers of organic photovoltaics and organic field-effect transistors may also leverage this compound for specialized research initiatives requiring precise molecular engineering.
- Core precursor for OLED host materials
- Enhances thermal stability in emissive layers
- Facilitates efficient energy transfer mechanisms
- Compatible with vacuum deposition processes
- Supports high-resolution display manufacturing
Quality Assurance and Supply
We operate as a global manufacturer committed to delivering consistent quality and reliable supply chains. Every batch undergoes strict analytical testing, including HPLC and NMR verification, to ensure compliance with stated purity levels. A Certificate of Analysis (COA) is provided with each shipment to guarantee traceability and performance reliability. Our flexible packaging options accommodate both laboratory-scale research and large-volume industrial production needs.
Customers benefit from our extensive expertise in organic synthesis and logistics. We offer competitive bulk pricing and responsive technical support to assist with integration into your specific manufacturing processes. Whether for prototype development or mass production, our team ensures timely delivery and adherence to international safety and quality standards.
