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3phCN-ICz

Synonym: 5'-(5-Phenylindolo[3,2-a]carbazol-12(5H)-yl)-[1,1':3',1''-terphenyl]-2'-carbonitrile
Molecular Formula: C43H27N3
Molecular Weight: 585.69
SKU: MND-190264

 Product Description

3phCN-ICz, or 5'-(5-Phenylindolo[3,2-a]carbazol-12(5H)-yl)-[1,1':3',1''-terphenyl]-2'-carbonitrile, is a meticulously designed organic compound that showcases a blend of electronic and optical properties beneficial for organic electronics. Its structure integrates phenylindolo[3,2-a]carbazole and terphenyl units, which together support efficient charge transport and luminescence. This combination is particularly advantageous for applications requiring high performance in Organic Light Emitting Diodes (OLEDs) and Organic Field Effect Transistors (OFETs), where balanced electron and hole mobilities are crucial. The introduction of a nitrile group further enhances the compound's thermal stability and electron affinity, contributing to its overall effectiveness in electronic devices.

 

Application

3phCN-ICz is primarily aimed at enhancing the performance of organic electronic devices, including OLEDs and OFETs. Its dual functionality as a hole transporter and emitter positions it uniquely in the development of next-generation displays and transistors. The compound's thermal stability and electron affinity make it suitable for use in high-temperature environments and in devices requiring long-term reliability. Additionally, its luminescent properties suggest potential applications in lighting technologies and photovoltaics, where its ability to efficiently convert electrical energy into light or electricity can be leveraged. The versatility and performance of 3phCN-ICz underscore its significance in advancing organic materials science and electronics.

 

 

Articles:

- Novel benzonitrile-based AIE host with high triplet energy for highly efficient solution-processed blue TADF OLEDs

Publication Date: Available online 19 December 2022

Wei Jiang, Guanghao Zhang, Guimin Zhao, Xinjian Wang, Wenwen Tian, Yueming Sun

https://doi.org/10.1016/j.dyepig.2022.111037