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Tetrakis(2-Phenylbenzothiazole-C2,N')(μ-Dichloro)Diiridium(Iii) CAS NO 2092998-64-4


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CAS No.:2092998-64-4

Grade:Pharmacy Grade

Content:99.9%

Brand:Customizable

Packaging:Customizable

Description

Tetrakis(2-Phenylbenzothiazole-C2,N')(μ-Dichloro)Diiridium(Iii) is a highly specialized organometallic complex of iridium, a precious metal, designed for advanced catalytic and materials science applications. This compound is valued for its unique electronic and structural properties, which are critical for driving complex chemical transformations and enabling next-generation technologies. It is primarily sought by researchers and manufacturers in the fields of organic light-emitting diodes (OLEDs), photocatalysis, and fine chemical synthesis, where precise molecular control is paramount.

Application

  • Phosphorescent Emitter in OLEDs: A key component in the emissive layer of high-efficiency, deep-red or near-infrared organic light-emitting diodes for displays and lighting.
  • Photoredox Catalyst: Facilitates challenging bond-forming reactions under mild, visible-light irradiation for pharmaceutical and agrochemical research.
  • Homogeneous Catalysis: Acts as a catalyst precursor for hydrogenation, C-H activation, and other transition metal-catalyzed organic syntheses.
  • Materials Science Research: Used in the development of novel coordination polymers, sensors, and molecular devices due to its luminescent properties.
  • Academic & Industrial R&D: Serves as a critical reagent for studying iridium(III) photophysics and developing new catalytic cycles.

Basic Information

Product Name Tetrakis(2-Phenylbenzothiazole-C2,N')(μ-Dichloro)Diiridium(Iii)
CAS No. 2092998-64-4
Molecular Formula C56H36Cl2Ir2N4S4
Molecular Weight Contact for details
Synonyms Bis(μ-dichloro)tetrakis(2-phenylbenzothiazole)diiridium(III); Iridium(III) complex with 2-phenylbenzothiazole; Dichloro-bridged diiridium complex; Cyclometalated iridium(III) dimer; (2-Phenylbenzothiazolato)iridium(III) chloride dimer; OLED phosphorescent emitter; Photocatalyst precursor
EINECS Contact for details

Quality Control

Every batch of our organometallic complexes is produced and analyzed under strict inert atmosphere conditions to ensure integrity. We employ advanced analytical techniques including HPLC, NMR, and elemental analysis to verify chemical identity, purity, and the absence of metallic impurities. A comprehensive Certificate of Analysis (COA) detailing all test results is provided with each shipment to support your quality assurance protocols and R&D documentation.

Storage

Preserve in a tightly closed container, protected from light. Store under an inert atmosphere (argon or nitrogen) in a cool, dry place at 2-8°C for long-term stability. This compound is easily oxidized and light-sensitive; handling should be performed in a controlled glovebox or under a positive pressure of inert gas to prevent decomposition.

Specification

Item Specification
Appearance Dark red to brown crystalline solid
Identification (IR) Conforms to structure
Identification (NMR) Conforms to structure
Purity (HPLC) ≥ 98.0%
Iridium Content Contact for details
Residual Solvents (GC) Meets ICH guidelines

Note: Specifications can be tailored. Please contact us for the detailed technical data sheet of a specific grade.

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Each batch undergoes strict QC, accompanied by COA, MSDS, and full compliance with international standards.

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Our in-house lab drives process innovation, new product development, and tailored synthesis solutions.