색변환법 유기전계발광 소자용 유기 발광 재료의 합성 및 특성 분석

Synthesis and Characteristics of Organic Emitting Materials for OLEDs using Color Conversion Method

  • 곽선엽 (부산정보대학 산업디자인학부 시각디자인계열) ;
  • 류정이 (부경대학교 대학원 인쇄공학과) ;
  • 남장현 (부경대학교 대학원 인쇄공학과) ;
  • 이태훈 ((주)ICB) ;
  • 김태훈 ((주)ICB) ;
  • 손세모 (부경대학교 공과대학 화상정보공학부)
  • Kwak, Seon-Yeop (Department of Visual Design, Busan College of Information Technology) ;
  • Ryu, Jung-Yi (Department of Graphic Arts Engineering, Pukyoung National University) ;
  • Nam, Jang-Hyun (Department of Graphic Arts Engineering, Pukyoung National University) ;
  • Lee, Tae-Hoon (ICB., CO. LTD, Pukyoung National University Technocomplex) ;
  • Kim, Tae-Hoon (ICB., CO. LTD, Pukyoung National University Technocomplex) ;
  • Son, Se-Mo (Division of Image & Information Engineering, Pukyoung National University)
  • 발행 : 2005.03.01

초록

Organic light-emitting diodes(OLEDs) have received considerable attention since they were first reported by Tang. Novel organic fluorescent materials have been reported on synthesis and application of new organic light-emitting materials. Despite of much recent progress, fabrication of full-color OLEDs still remained to be done. Many method have been proposed to full-color OLEDs displays such as using separated red, green and blue emitters, stacking separate rad, green and blue emitter, using a white emitter with individually pattered color filters, microcavity structures and using a blue emitter with individually patterned fluorescent materials. The last method has much attention because of easy fabrication of OLEDs and low-priced fabrication. This paper reports the optical and electrical characteristics of OLEDs using novel molecules containing biphenyl structure. Optical properties of biphenyl derivatives doped with poly(9-vinyl carbazole)(PVK) are measured and found Forster energy transfer process in the blends. And devices were fabricated as ITO/PEDOT/PVK doped with biphenyl derivatives/$Alq_3$/Li:Al and I-V-L characteristics and EL efficiency of devices were examined.

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