Bis(1-phenylisoquinoline)(acetylacetonato)iridium(III)
CAS 435294-03-4
CAS · 435294-03-4
Product Overview
Bis(1-phenylisoquinoline)(acetylacetonato)iridium(III) is a high-purity oled-materials supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Appearance: | Red powder |
|---|---|
| Purity (HPLC): | 99% min |
Applications
Bis(1-phenylisoquinoline)(acetylacetonato)iridium(III) is a high-value organometallic compound widely used in the field of optoelectronics, particularly in organic light-emitting diodes (OLEDs). It acts as a phosphorescent emitter, providing efficient red or green light emission depending on the device design. The compound is incorporated into OLED layers to enhance color purity, brightness, and overall device efficiency. In addition to display technology, it is employed in the development of organic photovoltaic cells, sensors, and other photonic devices where stable and efficient luminescent materials are required. It is also utilized in research to study photophysical properties, energy transfer mechanisms, and metal–ligand interactions in organometallic complexes.
Benefits
The compound offers multiple benefits due to its unique molecular structure and iridium center. Its cyclometalated iridium framework enables efficient spin–orbit coupling, leading to high phosphorescence quantum yields and long emission lifetimes. This allows OLEDs and other devices to achieve high brightness with lower power consumption. The acetylacetonate ligand imparts solubility and stability, facilitating solution processing and thin-film fabrication. Moreover, it is chemically stable, thermally robust, and exhibits consistent luminescent properties, making it suitable for both research and industrial-scale device manufacturing. Its versatility in tuning emission wavelengths also enables customization for various display and lighting applications.
Conclusion
Bis(1-phenylisoquinoline)(acetylacetonato)iridium(III) is a critical organometallic phosphorescent material for advanced optoelectronic applications. Its high quantum efficiency, thermal and chemical stability, and tunable luminescence make it indispensable for OLEDs, photonic devices, and material research. The compound continues to play a key role in enhancing device performance and advancing the development of high-efficiency, next-generation lighting and display technologies.
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