Efficient blue organic light-emitting devices with a new bipolar emitter

The molecular structure of the bipolar emitter; I-V-L characteristics of the device based on the bipolar emitter, inset: current and power efficiencies of the device. [Display omitted] ► New multifunctional 4,4′-di-(1-pyrenyl)-4′′-[2-(9,9′-dimethylfluorene)]-triphenylamine (DPFA) has been designed,...

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Published inOrganic electronics Vol. 12; no. 2; pp. 358 - 363
Main Authors Tao, Silu, Jiang, Yilan, Lai, Shiu-Lun, Fung, Man-Keung, Zhou, Yechun, Zhang, Xiaohong, Zhao, Weiming, Lee, Chun-Sing
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier B.V 01.02.2011
Elsevier
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Abstract The molecular structure of the bipolar emitter; I-V-L characteristics of the device based on the bipolar emitter, inset: current and power efficiencies of the device. [Display omitted] ► New multifunctional 4,4′-di-(1-pyrenyl)-4′′-[2-(9,9′-dimethylfluorene)]-triphenylamine (DPFA) has been designed, synthesized, and applied as host emitter, electron- and hole-transporters in organic light-emitting devices (OLEDs). ► DPFA exhibits good thermal stability with a glass transition temperature ( T g) of 161 °C and shows blue emissions in both solution and films. ► DPFA has efficient bipolar charge transport properties for both hole and electron. ► Highly efficient blue emission with a maximum luminescence efficiency of 5.1 cd/A (5.3 lm/W) is obtained in DPFA based devices. A new multifunctional compound, 4,4′-di-(1-pyrenyl)-4′′-[2-(9,9′-dimethylfluorene)]-triphenylamine (DPFA) has been designed, synthesized and applied respectively as host-emitter, electron- and hole-transporters in organic light-emitting devices (OLEDs). The compound exhibits good thermal stability with a glass transition temperature ( T g) of 161 °C and shows blue emissions in both solution and films. OLEDs with DPFA playing various roles have been fabricated and characterized. The results show that DPFA has efficient bipolar charge transport properties for both hole and electron. By using DPFA as a blue emitter in a typical three layer device with a configuration of ITO/NPB(50 nm)/DPFA(20 nm)/TPBI(30 nm)/LiF(0.5 nm)/MgAg, highly efficient blue emission with a maximum luminescence efficiency of 5.1 cd/A (5.3 lm/W) is obtained.
AbstractList The molecular structure of the bipolar emitter; I-V-L characteristics of the device based on the bipolar emitter, inset: current and power efficiencies of the device. [Display omitted] ► New multifunctional 4,4′-di-(1-pyrenyl)-4′′-[2-(9,9′-dimethylfluorene)]-triphenylamine (DPFA) has been designed, synthesized, and applied as host emitter, electron- and hole-transporters in organic light-emitting devices (OLEDs). ► DPFA exhibits good thermal stability with a glass transition temperature ( T g) of 161 °C and shows blue emissions in both solution and films. ► DPFA has efficient bipolar charge transport properties for both hole and electron. ► Highly efficient blue emission with a maximum luminescence efficiency of 5.1 cd/A (5.3 lm/W) is obtained in DPFA based devices. A new multifunctional compound, 4,4′-di-(1-pyrenyl)-4′′-[2-(9,9′-dimethylfluorene)]-triphenylamine (DPFA) has been designed, synthesized and applied respectively as host-emitter, electron- and hole-transporters in organic light-emitting devices (OLEDs). The compound exhibits good thermal stability with a glass transition temperature ( T g) of 161 °C and shows blue emissions in both solution and films. OLEDs with DPFA playing various roles have been fabricated and characterized. The results show that DPFA has efficient bipolar charge transport properties for both hole and electron. By using DPFA as a blue emitter in a typical three layer device with a configuration of ITO/NPB(50 nm)/DPFA(20 nm)/TPBI(30 nm)/LiF(0.5 nm)/MgAg, highly efficient blue emission with a maximum luminescence efficiency of 5.1 cd/A (5.3 lm/W) is obtained.
Author Zhou, Yechun
Lee, Chun-Sing
Zhao, Weiming
Jiang, Yilan
Fung, Man-Keung
Tao, Silu
Lai, Shiu-Lun
Zhang, Xiaohong
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Issue 2
Keywords Bipolar emitter
OLED
Blue emitter
Performance evaluation
Multifunctionality
Transport properties
Lithium fluoride
Luminescence
Transmitter
Doped materials
Multiple layer
Charge transport
Indium oxide
Glass transition temperature
Thermal stability
Tin addition
Light emitting device
Polycyclic aromatic amines
Optoelectronic device
Organic light emitting diodes
Blue light
Organic electronics
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Snippet The molecular structure of the bipolar emitter; I-V-L characteristics of the device based on the bipolar emitter, inset: current and power efficiencies of the...
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SubjectTerms Applied sciences
Bipolar emitter
Blue emitter
Electronics
Exact sciences and technology
OLED
Optoelectronic devices
Semiconductor electronics. Microelectronics. Optoelectronics. Solid state devices
Title Efficient blue organic light-emitting devices with a new bipolar emitter
URI https://dx.doi.org/10.1016/j.orgel.2010.12.001
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