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Encapsulation of organic light-emitting

In addition to the thin-film solar cells, this system is suitable for use in other flexible electronics, such as a flexible, transparent, and light-weight encapsulation of organic light-emitting diode (OLED) displays and lighting. [Pg.244]

Wang YY, Hsieh T-E, Chen IC, Chen CH. Direct encapsulation of organic light-emitting devices (OLEDs) using photo-curable-co-polyacrylate/sihca nanocomposite resin. IEEE Trans Adv Packag 2007 30 421-7. [Pg.100]

Figure 4.8 Schematic representation some of the elements of a generalised multilayer organic light-emitting diode (OLED) with direct addressing. The thin metallic cathode segments are connected directly to the electron-transport layer (ETL). The impermeable encapsulation is not shown. Figure 4.8 Schematic representation some of the elements of a generalised multilayer organic light-emitting diode (OLED) with direct addressing. The thin metallic cathode segments are connected directly to the electron-transport layer (ETL). The impermeable encapsulation is not shown.
The future will demand continuous processes that deliver fine-scale, intricate, precisely controlled structures. Indicators for this include the emerging technologies of flat-panel and flexible displays based on variable state encapsulates and on organic light-emitting diodes, and incipient developments of flexible nanoelectronics based on advanced polymers and colloids - all accompanied by visions of lower cost processing on flexible... [Pg.229]

T. H. Zyung, D. H. Hwang, and S. D. Jung. Encapsulation method of a polymer or organic light emitting device. US Patent 6150187, assigned to Electronics and Telecommunications Research Institute (Daejeon, KR), November 21, 2000. [Pg.59]

Furuta, R, J. Brooks, M.E. Thompson, and J.M.J. Frkhet. 2003. Simultaneous light emission from a mixture of dendrimer encapsulated chromophores A model for single-layer multichromophoric organic light-emitting diodes. J Am Chem Soc 125 13165-13172. [Pg.551]

Figure 9.11 A schematic diagram of the elements and structure of an organic TFT (left) along with an image of an actual device. The PVA serves to encapsulate the device. With permission from Jackson, T.N. Lin, Y-Y. Gundlach, David J. and Klauk, H. Organic thin-film transistors for organic light-emitting flat-panel display backplanes. IEEE J. Sel. Topics In Quantum Electronics 1998 4 100-4. Copyright [1998] IEEE. Figure 9.11 A schematic diagram of the elements and structure of an organic TFT (left) along with an image of an actual device. The PVA serves to encapsulate the device. With permission from Jackson, T.N. Lin, Y-Y. Gundlach, David J. and Klauk, H. Organic thin-film transistors for organic light-emitting flat-panel display backplanes. IEEE J. Sel. Topics In Quantum Electronics 1998 4 100-4. Copyright [1998] IEEE.

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