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[Keyword] light emitting diodes(6hit)

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  • Patterning of OLED Glass Substrate for Improving Light Outcoupling Efficiency

    Savanna LLOYD  Tatsuya TANIGAWA  Heisuke SAKAI  Hideyuki MURATA  

     
    BRIEF PAPER

      Vol:
    E102-C No:2
      Page(s):
    180-183

    In this work, we have successfully patterned OLED glass substrates with a novel Yb-doped femtosecond laser. Such patterns can simultaneously increase the outcoupling efficiency up to 24.4%, as a result of reducing substrate waveguided light by scattering at the substrate/air interface and reduce the viewing angle dependence of the electroluminescent spectra.

  • Novel Field Emission Organic Light Emitting Diodes

    Meiso YOKOYAMA  Chi-Shing LI  Shui-Hsiang SU  

     
    PAPER-Electromagnetic Theory

      Vol:
    E94-C No:3
      Page(s):
    307-311

    This work presents a novel field emission organic light emitting diode (FEOLED), in which an inorganic phosphor thin film is replaced by an organic EL light-emitting layer in the configuration of a field emission display (FED). The field emission electrons emitted from the carbon nanotubes (CNTs) cathode of the proposed FEOLED intensify the electron density in the multi-layer organic materials of the OLED; thus, resulting a higher luminous efficiency than that of a conventional OLED. Additionally, the luminance of the proposed FEOLED can be further increased from 10,820 cd/m2 to 27,393 cd/m2 by raising the current density of OLED through an external electron source. A balanced quantity of electrons and holes in the OLED, which is achieved by the proposed FEOLED increases the number of excitons and attributes the enhancement of luminous efficiency of the OLED. Under the same operating current density, the proposed FEOLED exhibits a higher luminous efficiency than that of a conventional OLED.

  • Temperature Dependence of Photoluminescence Decay Time of Ir(ppy)3

    Taiju TSUBOI  Nadeer ALJAROUDI  

     
    PAPER-Characterization and Abilities of Organic Electronic Devices

      Vol:
    E87-C No:12
      Page(s):
    2028-2032

    Theoretical calculation has been done on the decay time of photoluminescence of Ir(ppy)3 dissolved in tetrahydrofuran and its temperature dependence at 1.2-300 K. Taking into account that the emitting triplet state consists of three zero-field splitting substates and taking into account one-phonon non-radiative transitions among these substates, the rate equations for the populations of these substates have been obtained. Three decay components are derived by solving not only the secular equation but also the rate equations, where the slow decay time shows decrease from 145 to 2 µs with increasing temperature from 1.2 to 300 K. A good agreement has been obtained for the temperature dependence between the calculated slow decay time and the observed one.

  • Colorimetric Detection of Iron (II) Using Novel Paired Emitter Detector Diode (PEDD) Based Optical System

    Susan BALDWIN  King Tong LAU  Roderick L. SHEPHERD  William S. YERAZUNIS  Dermot DIAMOND  

     
    PAPER-Evaluation Methods and Characterization of Organic Materials

      Vol:
    E87-C No:12
      Page(s):
    2099-2102

    A simple, novel and low cost optical device with the possibility of being integrated into a network of wireless sensors has been developed for the colorimetric detection of iron (II). The proposed device used is based on two light emitting diodes (LEDs) configured so that one acts as an emitter and the other as a light detector, and a simple threshold detection/timer circuit to measure the photocurrent at the detector LED. The colorimetric reaction is based on the chelating reaction of divalent iron with the ligand 1,10-phenanthroline. The calibration graph shows that the detection limit (DL) of iron (II) using this approach is 5 ppb with a RSD of 0.08%. All experiments were carried out in triplicate (N = 3). The effect of some cations on the determination of Fe (II) using the proposed method was also studied. Results found showed that the system is relatively free from interferences.

  • Spectroscopic Ellipsometry Study of Organic Light Emitting Diode Based on Phosphorescent PtOEP

    Taiju TSUBOI  Yoko WASAI  Nataliya NABATOVA-GABAIN  

     
    PAPER-Characterization and Abilities of Organic Electronic Devices

      Vol:
    E87-C No:12
      Page(s):
    2039-2044

    We have determined the thickness and optical constants (refractive index and extinction coefficient) of each layer in the multi-layer organic light emitting diode (OLED) devices based on phosphorescent platinum octaethyl porphine (PtOEP) using a phase modulated spectroscopic ellipsometer. The thickness of each layer estimated from the ellipsometric measurement is different from the thickness measured with quartz oscillator during the evaporation of organic materials. The deviation of total multi-layer thickness is about 5%, while the deviation in each of N, N'-bis(1-naphtyl)-N, N'-diphenyl-1,1'-biphenyl-4,4'-diamine (α-NPD) and aluminum tris 8-hydroxyquinoline (Alq3) layers is about 20-25%. Additionally the spectra of refractive index and extinction coefficient of Alq3 and α-NPD layers are different from those that are measured using the single layer films. These results are understood by penetration of organic material from the neighboring layers in the multi-layer structure devices.

  • Recent Progress in Organic Film Devices for Optics and Electronics

    Keiichi KANETO  Kazuhiro KUDO  Yutaka OHMORI  Mitsuyoshi ONODA  Mitsumasa IWAMOTO  

     
    REVIEW PAPER

      Vol:
    E81-C No:7
      Page(s):
    1009-1019

    Recent technologies of organic film devices are reviewed. New technologies of fabrication and characterization of organic thin films, electro-mechanical conversion materials, and applications for electrical and optical devices are discussed. In this review paper, especially organic light emitting diodes, tunneling junctions using polyimide Langmuir-Blodgett films, tunneling spectroscopy and high-density recording, plastic actuators using conducting polymers, molecular self-assembly process for fabricating organic thin film devices are reviewed.