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Lee, Ju Sung; Shim, Yong Sub; Park, Chan Hyuk; Hwang, Ha; Park, Cheol Hwee; Ju, Byeong-Kwon; Joo, Chul Woong; Park, Young Wook; Lee, Jonghee, E-mail: jonghee.lee@hanbat.ac.kr, E-mail: bkju@korea.ac.kr2019
AbstractAbstract
[en] Organic light-emitting diodes with a quasi-periodic nano-structure (QPS) were fabricated via a combination of laser interference lithography (LIL) and reactive ion etching (RIE). The LIL process was used to generate a periodic pattern, whereas the RIE process was used as a supplement to add randomness to the periodic pattern. The period of the fabricated periodic pattern was determined by finite difference time domain solutions. The height and density of the QPS were controlled by the RIE etching time and were optimized. The resulting quasi-periodic nanostructure comprised silicon dioxide (SiO2) with a low refractive index (n = 1.4–1.5), and an external quantum efficiency enhancement of 18% was achieved using the QPS device, without any viewing angle problems or spectral distortion, which are serious drawbacks of periodic patterns. (paper)
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Source
Available from http://dx.doi.org/10.1088/1361-6528/aaf541; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Journal
Nanotechnology (Print); ISSN 0957-4484;
; v. 30(8); [9 p.]

Country of publication
CHALCOGENIDES, CHARGED PARTICLES, EFFICIENCY, ELECTROMAGNETIC RADIATION, OPEN PLASMA DEVICES, OPTICAL PROPERTIES, OXIDES, OXYGEN COMPOUNDS, PHYSICAL PROPERTIES, Q DEVICES, RADIATIONS, SEMICONDUCTOR DEVICES, SEMICONDUCTOR DIODES, SEPARATION PROCESSES, SILICON COMPOUNDS, SURFACE FINISHING, THERMONUCLEAR DEVICES
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