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4,4'-Bis(Trifluoromethyl)-2,2'-Bipyridinebis[3,5-Difluoro-2-[5-Methyl-2-Pyridinyl)Phenyl] Iridium(Iii) Hexafluorophosphate CAS NO 2229858-27-7
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CAS No.:2229858-27-7
Grade:Pharmacy Grade
Content:99.9%
Brand:Customizable
Packaging:Customizable
Description
4,4'-Bis(Trifluoromethyl)-2,2'-Bipyridinebis[3,5-Difluoro-2-[5-Methyl-2-Pyridinyl)Phenyl] Iridium(Iii) Hexafluorophosphate is a high-purity, organometallic coordination complex featuring an iridium(III) center with cyclometalated ligands, designed for advanced photophysical applications. This compound matters for its exceptional performance as a phosphorescent dopant or emitter material, enabling high-efficiency light emission. It is critically needed by researchers and manufacturers in the organic light-emitting diode (OLED) and photocatalysis sectors, where precise molecular engineering dictates device performance.
Application
- Phosphorescent Emitter in OLED Displays & Lighting: Serves as a core dopant material in the emissive layer of red, orange, or deep-red OLED devices for smartphones, TVs, and solid-state lighting, offering high color purity and quantum efficiency.
- Photocatalyst for Organic Synthesis: Utilized in photoredox catalysis for challenging bond-forming reactions under mild, visible-light conditions, facilitating sustainable chemical synthesis.
- Light-Emitting Electrochemical Cell (LEC) Material: Employed as an ionic transition metal complex (iTMC) in LEC devices for potential low-cost, solution-processable lighting applications.
- Research & Development of New Optoelectronic Materials: Acts as a key reference compound or starting point for synthesizing novel iridium complexes with tailored photophysical properties.
- Sensor Development: Potential use in the fabrication of luminescent chemical sensors or bio-imaging probes due to its sensitivity to the local environment.
Basic Information
| Product Name | 4,4'-Bis(Trifluoromethyl)-2,2'-Bipyridinebis[3,5-Difluoro-2-[5-Methyl-2-Pyridinyl)Phenyl] Iridium(Iii) Hexafluorophosphate |
| CAS No. | 2229858-27-7 |
| Molecular Formula | C40H24F16IrN4P |
| Molecular Weight | 1083.73 g/mol |
| Synonyms | Iridium(III) bis[3,5-difluoro-2-(5-methyl-2-pyridinyl-κN)phenyl-κC](4,4'-bis(trifluoromethyl)-2,2'-bipyridine-κN,κN') hexafluorophosphate; (CF3-bpy)Ir(FMeppy)2PF6; Iridium complex with 4,4'-bis(trifluoromethyl)-2,2'-bipyridine and 3,5-difluoro-2-(5-methylpyridin-2-yl)phenyl; Red phosphorescent iridium complex; iTMC-Ir(CF3-bpy)(FMeppy)2(PF6); OLED dopant 2229858-27-7; Hexafluorophosphate salt of iridium(III) cyclometalated complex |
| EINECS | Contact for details |
Quality Control
Every batch of our 4,4'-Bis(Trifluoromethyl)-2,2'-Bipyridinebis[3,5-Difluoro-2-[5-Methyl-2-Pyridinyl)Phenyl] Iridium(Iii) Hexafluorophosphate is synthesized and purified under stringent conditions to ensure high chemical purity and batch-to-batch consistency, critical for optoelectronic performance. Our quality assurance protocol includes advanced analytical techniques to verify identity and quantify impurities. A comprehensive Certificate of Analysis (COA) detailing purity, HPLC chromatograms, and spectroscopic data is provided with each shipment to support your R&D and quality documentation needs.
Storage
Preserve in a tightly closed container, protected from light. Store in a cool, dry place at room temperature (15-25°C) under an inert atmosphere (e.g., argon or nitrogen) to prevent oxidation and degradation. This material is light-sensitive and should be handled in a controlled environment to maintain its photophysical integrity.
Specification
| Item | Specification |
|---|---|
| Appearance | Orange to red crystalline powder |
| Identification (IR) | Conforms to structure |
| Identification (HPLC) | Retention time matches reference |
| Purity (HPLC) | ≥ 98.0% (Area %) |
| Residual Solvents (GC) | Meets ICH guidelines |
| Elemental Analysis | Within theoretical ± 0.4% |
| Photoluminescence | Emission max. provided per batch |
Note: Specifications can be tailored. Please contact us for the detailed technical data sheet of a specific grade.
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