TMP-BiP 호스트와 DJNBD-1 도펀트를 이용한 청색 OLED의 제작과 특성평가

Fabrication and Characterization of Blue OLED using TMP-BiP Host and DJNBD-1 Dopant

  • Chang, Ji-Geun (Department of Electronics Engineering, Dankook University) ;
  • Ahn, Jong-Myoung (Department of Electronics Engineering, Dankook University) ;
  • Shin, Sang-Baie (Department of Electronics Engineering, Dankook University) ;
  • Chang, Ho-Jung (Department of Electronics Engineering, Dankook University) ;
  • Gong, Su-Choel (Department of Electronics Engineering, Dankook University) ;
  • Shin, Hyun-Kwan (Department of Electronics Engineering, Dankook University) ;
  • Gong, Myung-Sun (Department of Chemistry, Dankook University) ;
  • Lee, Chil-Won (Display Material Div., DaeJoo Electronic Materials Co., Ltd.)
  • 발행 : 2007.06.30

초록

The blue emitting OLEDs using TMP-BiP[(4'-Benzoylferphenyl-4-yl)phenyl-methanone-Diethyl(biphenyl-4-ymethyl) phosphonate] host and DJNBD-1 dopant have been fabricated and characterized. In the device fabrication, 2-TNATA [4,4',4"-tris(2-naphthylphenyl-phenylamino)-triphenylamine] as a hole injection material and NPB [N,N'-bis(1-naphthyl)N,N'-diphenyl-1,1'-biphenyl-4,4'-diamine] as a hole transport material were deposited on the ITO(indium tin oxide)/glass substrate by vacuum thermal evaporation method. Followed by the deposition, blue color emission layer was deposited using TMP-BiP as a host material and DJNBD-1 as a dopant. Finally, small molecule OLEDs with structure of $ITO/2-TNATA/NPB/TMP-BiP:DJNBD-l/Alq_3/LiF/Al$ were obtained by in-situ deposition of $Alq_3$, LiF and Al as the electron transport material, electron injection material and cathode, respectively. The effect of dopant into host material of the blue OLEDs was studied. The blue OLEDs with DJNBD-1 dopant showed that the maximum current and luminance were found to be about 34 mA and $8110\;cd/m^2$ at 11 V, respectively. In addition, the color coordinate was x=0.17, y=0.17 in CIE color chart, and the peak emission wavelength was 440 nm. The maximum current efficiency of 2.15 cd/A at 7 V was obtained in this experiment.

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