Synthesis of New Blue OLEDs with Biphenyl Structure and Relationship between EL Efficiency and Drift Mobility

Biphenyl 구조를 가진 새로운 청색 유기 발광 재료의 합성 및 EL효율과 이동도의 관계에 대한 연구

  • Lee, Tae-Hoon (Department of Graphic Arts Engineering, Graduate School, Pukyong National University) ;
  • Ryu, Jung-Yi (Division of Image and Information, College of Engineering, Pukyong National University) ;
  • Kim, Tae-Hoon (Division of Image and Information, College of Engineering, Pukyong National University) ;
  • Nam, Jang-Hyun (Department of Graphic Arts Engineering, Graduate School, Pukyong National University) ;
  • Park, Seong-Soo (Division of Applied Chemical Engineering, College of Engineering, Pukyong National University) ;
  • Son, Se-Mo (Division of Image and Information, College of Engineering, Pukyong National University)
  • 이태훈 (부경대학교 대학원 인쇄공학과) ;
  • 류정이 (부경대학교 공과대학 화상정보공학부) ;
  • 김태훈 (부경대학교 공과대학 화상정보공학부) ;
  • 남장현 (부경대학교 대학원 인쇄공학과) ;
  • 박성수 (부경대학교 공과대학 응용화학공학부) ;
  • 손세모 (부경대학교 공과대학 화상정보공학부)
  • Published : 2004.12.01

Abstract

Organic electroluminescent devices are light-emitting diodes in which the active materials consist entirely of organic materials. Recently, many fluorescent organic materials have been reported and the study on synthesis and application of new organic light-emitting materials has been demanded. This paper reports the optical and electrical characteristics of OLEDs using novel polymers containing biphenyl structure. First, Optical properties of novel light-emitting biphenyl derivatives doped with poly(9-vinyl carbazole)(PVK) and emitted blue, bluish green color, which is attributed to the overlap area between PL spectrum of host(PVK) and absorption spectra of guests(polymer). This is correspondent with F$\"{o}$rster energy transfer process in the blends. And, OLED devices were fabricated using poly (3,4-ethylenedioxy thiophene) (PEDOT) as a hole injection material and tris-(8-hydroxyquinoline) aluminum ($Alq_3$) as an electron transporting material. EL devices fabricated as ITO/PEDOT/PVK doped with biphenyl derivatives/$Alq_3$/Li:Al and I-V-L chatacteristics and emitting efficiency of EL devices were examined. Finally, the drift mobility of PVK doped with biphenyl derivatives and $Alq_3$ were measured by TOF technique varying applied electric field. EL efficiency was increased as the ratio of hole mobility of PVK doped with biphenyl derivatives and electron mobility of $Alq_3$ was close to one.

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