A Spiro [Fluorene-9, 9’-Xanthene]-Based Host Material for Efficient Green and Blue Phosphorescent OLED

Author:

Ni Ye Ren1,Su Hai Quan1,Huang Wei1,Zhao Jian Feng2,Qian Yan2,Xie Ling Hai2,Xie Guo Hua3,Zhao Yi3

Affiliation:

1. Inner Mongolia University

2. Nanjing University of Posts and Telecommunications

3. Jilin University

Abstract

A spiro [fluorene-9,9-xanthen-based host material SFX-PF, without possessing conventional hole-or electron-transporting units, has been demonstrated to be host material for efficient and low voltage green phosphorescent organic light-emitting device (PHOLED). This compound showed good thermal stability with high glass transition temperatures (Tg) at 172 °C. The green device exhibited a low turn-on voltage of 3 V, and maximum current efficiency, power efficiency, and external quantum efficiency (EQE) up to 47.9 cd/A, 45.4 lm/W, and 13.2%, respectively. At the luminance level of 1000 cd/m2, the driving voltages are still lower than 4 V with 15.9% roll-off in the EQE. In addition, SFX-PF can also host Fir6 with the blue device exhibiting a low turn-on voltage of 2.8 V and maximum current efficiency, power efficiency, and EQE up to 12.8 cd/A, 11.3 lm/W, and 7.5%, respectively. Based on our present and previous studies, it can be concluded that SFX could serve as a new building block for designing blue and green phosphorescent host materials.

Publisher

Trans Tech Publications, Ltd.

Reference17 articles.

1. C.W. Tang, S.A. VanSlyke, Appl. Phys. Lett. Vol. 51 (1987), p.913.

2. A. Kohler, J.S. Wilson, R.H. Friend, Adv. Mater. Vol. 14 (2002), p.701.

3. a) H. Sasabe, T. Chiba, S.J. Su, Y.J. Pu, K.I. Nakayama, J. Kido, Chem. Commun. (2008), p.5821; b) Y. Tao, Q. Wang, C. Yang, C. Zhong, K. Zhang, J. Qin, D. Ma, Adv. Funct. Vol. 20 (2010), p.304.

4. a) C. Adachi, M.A. Baldo, M.E. Thompson, S.R. Forrest, J. Appl. Phys. Vol. 90 (2001).

5. C.H. Chien, F.M. Hsu, C.F. Shu, Y. Chi, Org. Electron. Vol. 10 (2009), p.871.

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