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Basic Info

Cas number: 1106730-48-6
Chemical Formula: C45H29N5
Purity: Sublimed: >99.0% (HPLC)
Synonyms: 9-(3-(9H-Carbazol-9-yl)-5-(4,6-diphenyl-1,3,5-triazin-2-yl)phenyl)-9H-carbazole

Properties

Name: DCzTRZ
Full Name: 9,9'-(5-(4,6-Diphenyl-1,3,5-triazin-2-yl)-1,3-phenylene)bis(9H-carbazole)
Appearance: Pale yellow powder/crystals
Application for devices: Host, Blue Dopant Materials
Classification: Organic light-emitting diodes, TADF materials, Host materials, Emmiting layer materials (EML), Light-emitting diodes, Blue fluorescent dopant materials, Exciplex materials
Homo Lumo: HOMO = 5.9 eV, LUMO = 2.9 eV
Host Materials: Fluorescent
Melting Point: Tg = 160 ℃, Td = 397 ℃.
OLED Dopant Materials: Blue Dopant
Purification Techniques: Sublimed Materials
TADF Materials: Other TADF materials, Blue Dopant
Use by function: OLED Materials, TADF Materials

Optical properties

Absorption: λmax = 337 nm in Toluene
Fluorescence: λmax = 449 nm in Toluene

Compound Description

DCzTRZ: High-Purity BlueTADF Emitter for Advanced OLED Applications

At Noctiluca, we offer DCzTRZ (9,9′-(5-(4,6-Diphenyl-1,3,5-triazin-2-yl)-1,3-phenylene)bis(9H-carbazole)), a premium material designed to elevate the performance of organic light-emitting diodes (OLEDs). With a CAS number of 1106730-48-6 and a molecular formula of C45H29N5, DCzTRZ is integral to the development of cutting-edge OLED devices. This compound is synthesized with a high purity level of >99.0% (HPLC), ensuring its effectiveness in various advanced applications, including light-emitting diodes, emitting layer (EML) materials, and thermally activated delayed fluorescence (TADF) materials.

Molecular Structure and Optical Properties of DCzTRZ

DCzTRZ is distinguished by its sophisticated molecular structure, featuring a triazine core linked to two carbazole moieties. This configuration contributes to its exceptional electronic and photophysical properties, making it an ideal candidate for OLED applications. This compound exhibits an absorption maximum at λmax = 337 nm and photoluminescence at λmax = 449 nm in toluenewhich corresponds to the blue color of the emission. The HOMO/LUMO energy levels, calculated at 5.9 eV and 2.9 eV respectively, further enhance its utility in electronic applications, promoting efficient charge transport and energy transfer.

Key Features and Advantages of DCzTRZ

  • Superior Purity and Quality: Our DCzTRZ is meticulously purified through sublimation, achieving a purity of >99.0% (HPLC). This high level of purity is essential for maintaining consistent performance in OLED devices, particularly in the development of stable emissive layers.
  • Optimized for OLED Technology: DCzTRZ serves as an advanced blue TADF material, making it highly versatile for use in various OLED applications. Its integration into emissive layers and exciplex materials results in devices with enhanced color purity, energy efficiency, and prolonged operational life.
  • Outstanding Optical and Electronic Properties: DCzTRZ has excellent light emission characteristics, with absorption maxima at 337 nm and photoluminescence at 449 nm in toluene The compound’s HOMO/LUMO levels, combined with its robust molecular structure, enable efficient charge and energy management, which is crucial for developing high-performance OLED devices.
  • Exceptional Thermal Stability: DCzTRZ is engineered to maintain its structural and electronic integrity under demanding conditions, with a glass transition temperature (Tg) of 160 °C and a decomposition temperature (Td) of 397 °C. This high thermal stability ensures that the material remains reliable even in challenging OLED environments, contributing to the longevity and durability of the devices.

The Role of DCzTRZ in Advanced OLED Development

DCzTRZ plays a pivotal role in the advancement of OLED technology. As a key material in the formulation of emissive layers, it significantly enhances the efficiency and durability of OLEDs. Its function as a TADF material allows for the development of highly efficient, next-generation displays with superior color accuracy and brightness. Moreover, the compound’s robust thermal properties ensure long-lasting performance, making it indispensable for modern electronic applications.

Conclusion

DCzTRZ reflects Noctiluca’s dedication to delivering high-quality chemical materials essential for the progression of OLED technology. As a leading supplier of OLED materials and a trusted contract research organization (CRO), we are committed to providing products that support innovation and technological excellence.

Contact us today to learn more about how DCzTRZ can fulfill your research and industrial requirements. Discover the impact that our high-purity materials can have on the success of your projects, or inquire about bulk orders for this compound.

Bibliography

H. Nakanotani, C. Adachi “Thermally activated delayed fluorescence from carbazole–triazine hybrids: DCzTRZ and analogues” Applied Physics Letters, 2013, 103, 213303. DOI: 10.1063/1.4829022

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