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A review on the Organic Light-Emitting Diodes

Amit Kumar, Sacheen Kumar

Abstract


Organic Light emitting diodes OLED have received a large interest in the research community for the last few year. Device consists of a thin film placed between two electrodes of an organic compound. By applying a voltage to the electrodes, charges get injected into the organic Material where they form excited states that recombine and generate light in the past five year OLED display have developed into commercially available in portable small electronics applications such as portable phones MP3 player digital camera and televisions In this review paper we have discuss a brief history and fundamental of OLED.


Keywords


OLED, LUMO, HOMO, design, device,

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References


Sasabe H, Kido J. Development of high performance OLEDs for general lighting. Journal of Materials Chemistry C. 2013;1(9):1699-707.

J. H. Burroughes, D. D. C. Bradely, A. R. Brown, R. N. Marks, K. Mackay, R. H. Friend, P. L. Burns, and A. B. Holmes, “Light-emitting diodes on conjugated polymers,” Nature 347, 539-541, (1990).

C. Adachi, M. A. Baldo, M. E. Thompson, and S. R. Forrest, "Nearly 100% internal phosphorescence efficiency in an organic light-emitting device,", vol. 90, pp. 5048-5051, (2001), (Journal of Applied Physics).

Ching W. Tang ,Su, Shi-Jian, Daisaku Tanaka, Yan-Jun Li, Hisahiro Sasabe, Takashi Takeda, and Junji Kido. "Novel four-pyridylbenzene-armed biphenyls as electron-transport materials for phosphorescent OLEDs." , no. 5, 941-944 (1987) (Organic letters 10

Geffroy, Bernard, Philippe Le Roy, and Christophe Prat. "Organic light‐emitting diode (OLED) technology: materials, devices and display technologies, no. 6, 572-582 (2006) (." Polymer International 55)

Cambridge friend, Zhang, Minlu. "Organic Optoelectronic Devices: Organic Light-Emitting Diodes (OLED)."(1996).

Hisahiro Sasabe,Sasabe, Hisahiro, and Junji Kido. "Development of high performance OLEDs for general lighting." C 1, no. 9, 1699-1707 (2012) (Journal of Materials Chemistry)

Tsutsui T, Yang MJ, Yahiro M, Nakamura K, Watanabe T, Tsuji T, Fukuda Y, Wakimoto T, Miyaguchi S. High quantum efficiency in organic light-emitting devices with iridium-complex as a triplet emissive center. Japanese Journal of Applied Physics. 1999 Dec;38(12B):L1502.

Geffroy, Bernard, Philippe Le Roy, and Christophe Prat. "Organic light‐emitting diode (OLED) technology: materials, devices and display technologies, no. 6, 572-582 (2006).

Sasabe, Hisahiro, and Junji Kido. "Development of high performance OLEDs for general lighting." C 1, no. 9, 1699-1707 (2013) (Journal of Materials Chemistry)

H. Yan, Q. Huang, B. J. Scott, and T. J. Marks, "A polymer blend approach to fabricating the hole transport layer for light-emitting diodes," vol. 84, pp. 3873-3875, (2004), (Applied Physics Letters).

Zhang, Minlu. "Organic Optoelectronic Devices: Organic Light-Emitting Diodes (OLED)." 4-6.

Clark W. Crawford, “Organic Light Emitting Diodes Have Bright Future in Flat Panel Displays”,(2003), (Technology Commercialization Alliance).


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