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Extraction of waveguided light by anisotropic scattering polarizer in OLED for LCD backlights

机译:LCD背光用OLED中的各向异性散射偏振器提取波导光

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We demonstrated that the anisotropic scattering polarizer (ASP) laminated to glass substrate surface increased theoptical efficiency of organic electroluminescent (EL) device for liquid crystal display (LCD) backlight applications.ASP was properly prepared by drawing the liquid crystal polymer (LCP) dispersed poly(carbonate) film. ASP couldextract emitting light trapped in substrate of organic EL devices involved in polarization selectivity. Light extractionability and polarization selectivity were changed by the thickness of electron transporting layer (ETL) of organic ELdevices. Optical efficiency for 60 nm ETL thickness device through absorbing polarizer was not improved so much bythe lamination of ASP. Whereas, low efficiency of 120 nm ETL thickness device was effectively improved by thelamination of ASP, which was due to extracting waveguided light as a substantially polarized emission. Although thedegree of increase for 120 nm ETL thickness device by the lamination of ASP was very large, the final opticalefficiency was less than or comparable to that for 60 nm ETL thickness device. However, in the case of 90 nm ETLthickness device, the lamination of ASP increased the optical efficiency by the factor of 1.2-1.3 against 60 nm ETLthickness device.
机译:我们证明了层压到玻璃基板表面的各向异性散射偏振片(ASP)可以提高有机电致发光(EL)器件在液晶显示器(LCD)背光应用中的光学效率。通过拉伸液晶聚合物(LCP)分散的聚(碳酸盐)薄膜。 ASP可以提取出与极化选择性有关的有机EL器件中捕获的光。有机EL器件的电子传输层(ETL)的厚度改变了光提取能力和偏振选择性。通过ASP的层压,通过吸收偏振器对60nm ETL厚度的器件的光学效率没有得到很大改善。然而,ASP的层压有效地改善了120 nm ETL厚度器件的低效率,这是由于提取了作为基本偏振发射的波导光。尽管通过ASP层压对于120 nm ETL厚度器件的增加程度非常大,但最终光学效率小于或与60 nm ETL厚度器件相当。但是,在90 nm ETL厚度器件的情况下,ASP的层压相对于60 nm ETL厚度器件将光学效率提高了1.2-1.3倍。

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