Open Access Open Access  Restricted Access Subscription or Fee Access

DIFFERENT METHODOLOGIES USED FOR PERFORMANCE ANALYSIS OF ORGANIC LIGHT EMITTING DIODE

Abhilasha ., K M Singh

Abstract


Organic Light Emitting Diode (OLED) is a Solid state lighting devices, the charge transporters must be infused from the anode and cathode yet the execution, lifetime, effectiveness and solidness of these devices are normally administered by the correct thickness of the material layers and terminal/organic interfaces at the anode contacts. This study we exhibit the approach using different thickness and doping of the material in Organic Light Emitting Diode. We could enhance the effectiveness of doping materials by framing exciplex improved OLED devices and concentrate their execution enhancement by utilizing different thickness. Keyword: OLED, Thickness, Doping, performance, Efficiency.

Full Text:

PDF

References


Mallesham, Godumala, et al. "Phosphine oxide functionalized pyrenes as efficient blue light emitting multifunctional materials for organic light emitting diodes." Journal of Materials Chemistry C 3.6 (2015): 1208-1224.

Liang, Aihui, et al. "Sky-blue phosphorescent organic light-emitting diodes with dibenzo-24-crown-8 substituted iridium(III) complexes as the dopants" Dyes and Pigments 138 (2017):77-82.

Tavgeniene, Daiva, et al. "Phenanthro [9, 10-d] imidazole based new host materials for efficient red phosphorescent OLEDs." Dyes and Pigments 137 (2017): 615-621.

Xu, Lisong, Ching W. Tang, and Lewis J. Rothberg. “High efficiency phosphorescent white organic light-emitting diodes with an ultra-thin red and green co-doped layer and dual blue emitting layers." Organic Electronics 32 (2016): 54-58.

Zhao, Yukun, et al. "Mechanism of suppressing efficiency droop by modulating the thickness of quantum barriers in light-emitting diodes." Japanese Journal of Applied Physics 56.6 (2017): 062101

Cornelius Fuchs, et al. "Enhanced light emission from top-emitting organic light-emitting diodes by optimizing surface plasmon polariton losses." Physical Review B 92.24 (2015): 245306.

Tien-Lung Chiu and Ya-Ting Chuang. "Spectral observations of hole injection with transition metal oxides for an efficient organic light-emitting diode." Journal of Physics D: Applied Physics 48.7 (2015): 075101.

Yi-Jiun Shiu, et al. "Efficient thermally activated delayed fluorescence of functional phenylpyridinato boron complexes and high performance organic light-emitting diodes." Journal of Materials Chemistry C 5.6 (2017): 1452-1462.

Jwo-Huei Jou, et al. "Approaches for fabricating high efficiency organic light emitting diodes." Journal of Materials Chemistry C 3.13 (2015): 2974-3002.

Yolande Murat, et al. "Bright and efficient inverted organic light-emitting diodes with improved solution-processed electron-transport interlayers." Organic Electronics (2017).

Przemyslaw Data, et al. "Exciplex Enhancement as a Tool to Increase OLED Device Efficiency." The Journal of Physical Chemistry C 120.4 (2016): 2070-2078.

Eunhye Kim, et al. "A systematic approach to reducing angular color shift in cavity-based organic light-emitting diodes." Organic Electronics (2017).

Kiet Tuong Ly, et al. "Near-infrared organic light-emitting diodes with very high external quantum efficiency and radiance." Nature Photonics (2016).

Maybritt Kuhn, et al. "Band alignment in organic light emitting diodes-On the track of thickness dependent onset voltage shifts." Organic Electronics 41 (2017): 79-90.

Dhrubajyoti saikia and Ranjit sarma, "A comparative study of OLED using various thickness of electron transport layer." Indian J. Sci. Res 13.1 (2017): 99-103.

Yang Zhao, et al. "Charge transport in structural-ordering doped organic crystals: The effect of dye-doping concentration and crystal thickness on the mobility." Synthetic Metals 223 (2017): 12-18.

Mahdiyar Nouri Rezaie, et al. "Quality enhancement of AZO thin films at various thicknesses by introducing ITO buffer layer." Journal of Materials Science: Materials in Electronics 28.13 (2017): 9328-9337.


Refbacks

  • There are currently no refbacks.