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800394-58-5

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  • Factory Price OLED 99% 800394-58-5 Ir(mppy)3; Tris[2-(p-tolyl)pyridine-C2,N)]iridium(III) Manufacturer

    Cas No: 800394-58-5

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800394-58-5 Usage

General Description

Tris[2-(p-tolyl)pyridine]iridium(III) is a chemical compound that is commonly used as a phosphorescent emitter in organic light-emitting diodes (OLEDs). It is a complex containing iridium(III) as the central metal ion and three ligands, each consisting of a 2-(p-tolyl)pyridine group. Tris[2-(p-tolyl)pyridine]iridium(III) is known for its high efficiency and long operational lifetime in OLEDs, making it a popular choice for commercial display applications. Its unique photoluminescent properties also make it a promising candidate for other optoelectronic devices and as a tool for studying photophysical processes in organic materials. Despite its promising applications, it is important to handle this compound with caution due to its potential toxic and environmental effects.

Check Digit Verification of cas no

The CAS Registry Mumber 800394-58-5 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 8,0,0,3,9 and 4 respectively; the second part has 2 digits, 5 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 800394-58:
(8*8)+(7*0)+(6*0)+(5*3)+(4*9)+(3*4)+(2*5)+(1*8)=145
145 % 10 = 5
So 800394-58-5 is a valid CAS Registry Number.

800394-58-5Upstream product

800394-58-5Downstream Products

800394-58-5Relevant articles and documents

Efficient synthesis of tris-heteroleptic iridium (III) complexes based on the Zn2+-promoted degradation of tris-cyclometalated Iridium (III) complexes and their photophysical properties

Tamura, Yuichi,Hisamatsu, Yosuke,Kumar, Sarvendra,Itoh, Taiki,Sato, Kyouhei,Kuroda, Reiko,Aoki, Shin

, p. 812 - 833 (2017/01/24)

We report on the efficient synthesis of tris-heteroleptic iridium (Ir) complexes based on the degradation of triscyclometalated Ir complexes (IrL3, L: Cyclometalating ligand) in the presence of Br?nsted and Lewis acids such as HCl (in 1,4- dioxane), AlCl3, TMSCl, and ZnX2 (X = Br or Cl), which affords the corresponding halogen-bridged Ir dimers (μ-complexes). Tris-cyclometalated Ir complexes containing electron-withdrawing groups such as fluorine, nitro, or CF3 moieties on the ligands were less reactive. This different reactivity was applied to the selective degradation of heteroleptic Ir complexes such as fac- Ir(tpy)2(F2ppy) (fac-12) (tpy: 2-(4'-tolyl)pyridine and F2ppy: 2-(4',6'-difluorophenyl)pyridine), mer-Ir(tpy) 2 (F2ppy) (mer-12), and mer-Ir(mpiq)2(F2ppy) (mer-15) (mpiq: 1-(4'-methylphenyl)isoquinoline). For example, the reaction of mer-12 with ZnBr2 gave the heteroleptic μ-complex [{Ir(tpy)(F2ppy)(μ-Br)}2] 27b as a major product, resulting from the selective elimination of the tpy ligand of mer-12, and treatment of 27b with acetylacetone (acacH) afforded the corresponding tris-heteroleptic Ir complex Ir(tpy)(F2ppy)(acac)18. In addition, another tris-heteroleptic Ir complex 35a having 8-benzenesulfonylamidoquinoline (8BSQ) ligand was synthesized. Mechanistic studies of this degradation reaction and the photochemical properties, especially a dual emission, of these newly synthesized tris-heteroleptic Ir complexes are also reported.

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