• Title/Summary/Keyword: EL display

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ZnO/ITO anode for organic electro-luminescence devices

  • Jeong, S.H.;Kho, S.;Jung, D.;Boo, J.H.
    • 한국정보디스플레이학회:학술대회논문집
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    • 2003.07a
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    • pp.885-886
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    • 2003
  • A bilayer is used as an anode electrode for organic electroluminescent devices. The bilayer consist of an ultrathjn ZnO layer adjacent to an hole-transporting layer and an Indium tin oxide(ITO) outerlayer. We tried to bring low the barrier between the devices as deposited ZnO films on ITO substrates. We fabricated the organic EL structure consisted of Al as cathode, $Al_{2}O_{3}$ as electro transport layer, Alq3 as luminously layer, triphenyl diamine(TPD) as hole transport layer and ZnO(l nm )/ITO(l50 nm) as anode. The result of this experiment was not good compared with the case of using ITO, Nevertheless, at this structure we obtained the lowest turn-on voltage as the value of 19 V and the good brightness (6200 $cd/m^{2}$) of the emission light from the devices. Then the quantum efficiency was to be 1.0%.

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New Methods in the Technology of Electroluminescent Phosphors

  • Sychov, M.M.;Bahmet'ev, V.V.;Khavanova, L.V.;Kuznetsov, A.I.;Smimov, A.;Vasil'eva, I.V.;Mjakin, S.V.;Nakanishi, Y.
    • 한국정보디스플레이학회:학술대회논문집
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    • 2003.07a
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    • pp.1065-1070
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    • 2003
  • Controlling synthesis conditions of ZnS:Cu,Al and ZnS:Cu electroluminescent phosphors we optimized particle size, color properties and efficiency. Surface properties were studied by new method and showed correlation with luminescence as shown by the analysis of EL spectra with Fok-Alentsev method. Luminance and maintenance improvement was achieved by the electron-beam annealing due to additional decomposition of $ZnS-Cu_{2}S$ solid solution and formation of centers of blue luminescence.

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New red light-emitting copolymer based on polyfluorene

  • Cho, Nam-Sung;Hwang, Do-Hoon
    • 한국정보디스플레이학회:학술대회논문집
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    • 2002.08a
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    • pp.721-723
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    • 2002
  • We report a new red light emitting fluorene-based copolymer, poly{9,9-bis(2'-ethylhexyl)fluorene-2,7-diyl-co-2, 5-bis(2-thienyl-1-cyanovinyl}-1-(2'-ethylhexyloxy)-4methoxybenzene-5",5'''-diyl} (PFTCVB). The synthesized copolymers showed the absorption maxima at about 380 nm and the absorption between 425 and 600 nm increased as the fraction of the thiophene-containing monomer (BTCVB) increased. In PL, the emission maxima of the copolymers were red-shifted as the fraction of BTCVB increased, despite the similar absorption characteristics were shown in the UV-visible spectra. The copolymer containing 15 mol% of BTCVB showed a maximum PL and EL emission at 620 and 630 nm.

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Electroluminescence Characteristics of Novel Phenylamine Derivatives for Organic Electroluminescent Devices

  • Park, Su-Mi;Yun, Je-Jung;Oh, Gwang-Chae;Son, Sung-Hee;Han, Eun-Mi;Kim, Sung-Hoon;Jin, Sung-Ho;Moon, Ju-Hyun
    • 한국정보디스플레이학회:학술대회논문집
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    • 2002.08a
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    • pp.740-742
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    • 2002
  • We reported the optical and electrical characteristics of organic electroluminescent phenylamine derivatives. The maximum EL peak of organic electroluminescent devices(OELDs) with PDV-DMI and PDV-AQ are at 615nm and at 592nm which are corresponding to red and orange emission, respectively.

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Fabrication of highly efficient polymeric phosphorescent light-emitting devices with Laser Induced Thermal Imaging (LITI) technique

  • Kim, Mu-Hyun;Suh, Min-Chul;Lee, Seong-Taek;Kwon, Jang-Hyuk;Chung, Ho-Kyoon
    • 한국정보디스플레이학회:학술대회논문집
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    • 2002.08a
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    • pp.94-97
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    • 2002
  • We report highly efficient phosphorescent-dye-doped polymeric light-emitting devices. The devices consist of a polymeric light-emitting layer comprising the phosphorescent dye, host, and matrix polymers. We patterned the phosphorescent-dye-doped polymeric layer with the LITI technique. The devices showed high efficiencies and good pattern quality to adapt to the development of full-color electroluminescent (EL) devices.

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Color stable and efficient white organic light emitting diodes with phosphorescent emitters

  • Lee, Hyun-Koo;Lee, Chang-Hee
    • 한국정보디스플레이학회:학술대회논문집
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    • 2009.10a
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    • pp.415-417
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    • 2009
  • Color stable and efficient two wavelength white organic light emitting diodes (OLEDs) were fabricated using a iridium(III)[bis(4,6-difluorophenyl)-pyridinato-N,$C^2$'] picolinate (FIrpic) as a blue phosphorescent emitter and a bis(1-phenylisoquinolinato-$C^2$,N)iridium (acetylacetonate) ((piq)$_2$Ir(acac)) as a red phosphorescent emitter. The emitting layers consist of two blue emitting layers and one red emitting layer which is between the two blue layers. The device reaches the peak efficiencies of 7.84 % and 10.3 cd/A at 0.6 mA/$cm^2$. Furthermore, there was little change of EL spectra according to current density change in the device.

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Enforced Effects of Bulky Side Groups and Side Group Substitution Position on OLED High Performance: How to Control Side Groups for Highly Efficient Blue Emitters?

  • Park, Young-Il;Kim, Soo-Kang;Jaung, Jae-Yun;Park, Jong-Wook
    • 한국정보디스플레이학회:학술대회논문집
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    • 2009.10a
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    • pp.493-496
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    • 2009
  • We report the EL property of blue and blue-violet emitting materials with anthracene moiety as well as a new core structure containing indenopyrazine. Non-doped device using one of indenopyrazine core derivatives was found to exhibit excellent blue-violet color purity of (0.173, 0.063), and narrow emission band of 42nm FWHM. One of anthracene core derivatives with bulky side group also exhibits excellent color coordinates (0.156, 0.088) and an external quantum efficiency of 7.18%.

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Synthesis and Characterization of Red Light-Emitting Random Copolymers

  • Lee, Yeong-Beom;Shim, Hong-Ku
    • 한국정보디스플레이학회:학술대회논문집
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    • 2009.10a
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    • pp.1418-1421
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    • 2009
  • A series of new light-emitting random copolymers with fully conjugated structure was prepared, for the first time through the well-known Gilch polymerization between 1,4-bis(chloromethyl)-2-ethylhexyloxy-5-methoxybenzene and 2,5-bis(bromomethyl)thiophene monomers in different ratios. The synthesized polymers (on thin film) showed the maximum wavelength of UV-visible absorbance and photoluminescence (PL) near 500 nm and near 600 nm, respectively. A single-layer light-emitting diode device, which has a simple ITO (indium-tin oxide)/polymer/Al configuration, was fabricated by spin-coating of polymers and then vacuum evaporation of Al metal. The threshold bias of PMEHPVTVs was in the range of 3.5-10 V. As in the PL spectra, the maximum wavelength of light emission near 600 nm was also shown in electroluminescence (EL) spectra of PMEHPVTVs when the operating voltage was about 7 - 14 V.

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A Research on Organic Electro-luminescence (유기 전기발광 소자에 관한 연구)

  • Lee, Han-Seong
    • Proceedings of the KIEE Conference
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    • 2005.10a
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    • pp.82-85
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    • 2005
  • Organic EL has been expected to adopt to a new styles of technology that make flat display after Tang & Vanslyke made good electric luminescence device in late 1980s. Their studies based on multi layer structure that consists of emitting layer and carrier transporting layer using proper organic material. In this study, we made multi layer device using $Eu(TTA)_3(phen)$ as a luminescence material by PVD and investigate luminous properties of each device. But oxidization of organic layer by ITO, energy walls in both pole interface, contaminations of ITO surface, importance of protecting membrane, diffusive dimming of light to cathode organic layer, these causes of degradations are common facts of a macromolecule and micromolecule. We think these degradation caused by the impact of heat and electro-chemical factor, bulk effect and interface phenomenon, and raise a question.

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A study on Fabrication and Characterization of Organic Light-Emitting Diodes (유기 발광 다이오드의 제작 및 특성에 관한 연구)

  • Lee, Han-Seong
    • Proceedings of the KIEE Conference
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    • 2008.11b
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    • pp.89-91
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    • 2008
  • Organic EL has been expected to adopt to a new styles of technology that make flat display after Tang & Vanslyke made good electric luminescence device in late 1980s. Their studies based on multi layer structure that consists of emitting layer and carrier transporting layer using proper organic material. But oxidization of organic layer by ITO, energy walls in both pole interface, contaminations of ITO surface, importance of protecting membrane, diffusive dimming of light to cathode organic layer, these causes of degradations are common facts of a macromolecule and micro molecule. We think these degradation caused by the impact of heat and electro-chemical factor, bulk effect and interface phenomenon, and raise a question.

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