852673-40-6Relevant academic research and scientific papers
Novel bluish green benzimidazole-based iridium(III) complexes for highly efficient phosphorescent organic light-emitting diodes
Zhao, Jin-Hui,Hu, Yong-Xu,Dong, Yan,Xia, Xin,Chi, Hai-Jun,Xiao, Guo-Yong,Li, Xiao,Zhang, Dong-Yu
, p. 1973 - 1979 (2017)
Three multifluorinated benzimidazole-based iridium [Ir(iii)] complexes abbreviated as 1F-Ir, 2F-Ir, and 3F-Ir were designed and synthesized. Their photoluminescent, thermal, and electrochemical properties were investigated in detail. These Ir(iii) complex
Organometallic compounds and display device employing the same
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, (2008/06/13)
Organometallic compounds and display devices employing the same. Organometallic compounds can serve as host materials for an organic electroluminescent device. Furthermore, the organometallic compounds can also serve as green phosphorescent dopant materia
Organometallic complex for organic electroluminescent device
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Page/Page column 8, (2008/06/13)
An organometallic complex having formula (I) wherein M is a transition metal; each A1 and A2 is independently a monodentate ligand, or A1 and A2 are covalently joined together to form a bidentate ligand; R1
Iridium complexes as light emitting materials and organic light emitting diode device
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Page/Page column 13, (2008/06/13)
Phosphorescent iridium complexes having Formula I or Formula II: wherein X is chosen from a monoanionic bidentate ligand; Z is chosen from an atomic group wherein Z together with the buta-1,3-diene to which Z is attached form an aryl group or heteroaryl group; R, R1, and R2 are independently chosen from a hydrogen atom or a substituent; m is an integer from 0 to 4; and n is an integer from 0 to the maximum number of possible substituents on Z, are disclosed. Light emitting devices using the phosphorescent iridium complexes are also disclosed.
