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Dive into the research topics where Cheol Hwee Park is active.

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Featured researches published by Cheol Hwee Park.


ACS Applied Materials & Interfaces | 2013

Effective indium-doped zinc oxide buffer layer on silver nanowires for electrically highly stable, flexible, transparent, and conductive composite electrodes

Hyun Jun Lee; Ju Hyun Hwang; Kyung Bok Choi; Sun Gyu Jung; Kyu Nyun Kim; Yong Sub Shim; Cheol Hwee Park; Young Wook Park; Byeong Kwon Ju

We demonstrate a flexible, transparent, and conductive composite electrode comprising silver nanowires (Ag NWs), and indium-doped zinc oxide (IZO) layers. IZO is sputtered onto an Ag NW layer, with the unique structural features of the resulting composite suitable as a flexible, transparent, conductive electrode. The IZO buffer layer prohibits surface oxidation of the Ag NW, and is thereby effective in preventing undesirable changes in electrical properties. The newly designed composite electrode is a promising alternative to conventional ITO films for the production of flexible and transparent electrodes to be applied in next-generation flexible electronic devices.


Nanoscale | 2016

An extremely low-index photonic crystal layer for enhanced light extraction from organic light-emitting diodes

Yong Sub Shim; Ju Hyun Hwang; Cheol Hwee Park; Sun Gyu Jung; Young Wook Park; Byeong Kwon Ju

This paper reports organic light-emitting diodes (OLEDs) with improved light extraction fabricated by embedding an extremely low-index photonic crystal (LIPC) layer. The LIPC layer increases the optical efficiency through the reduced wave-guide mode between the substrate and anode both by increased light resonance and by a strengthened diffraction effect from an extremely low-refractive-index medium, specifically a line structure composed of a vacuum gap. As a result, the current efficiency and power efficiency of the LIPC-OLEDs are 1.51 and 1.93 times higher, respectively, than the reference device at 1000 cd m(-2). Because most of the light extraction is significant, especially in the forward direction, at the specific wavelengths satisfying the Braggs diffraction equation, it is possible to calculate the anomalous spectrum of the LIPC-OLED through the finite-difference time domain (FDTD) method.


ACS Applied Materials & Interfaces | 2015

High-Performance Hybrid Buffer Layer Using 1,4,5,8,9,11-Hexaazatriphenylenehexacarbonitrile/Molybdenum Oxide in Inverted Top-Emitting Organic Light-Emitting Diodes

Cheol Hwee Park; Hyun Jun Lee; Ju Hyun Hwang; Kyu Nyun Kim; Yong Sub Shim; Sun Gyu Jung; Chan Hyuk Park; Young Wook Park; Byeong Kwon Ju

A high-performance 1,4,5,8,9,11-hexaazatriphenylenehexacarbonitrile (HATCN)/molybdenum oxide (MoO3) hybrid buffer layer with high hole-injection efficiency and superior plasma resistance under the sputtering process was developed. The HATCN enhances the hole-injection efficiency, and the MoO3 effectively protects the underlying organic layers from plasma damage during deposition by sputtering. This improves the characteristics of inverted top-emitting organic light-emitting diodes using a top transparent conductive oxide electrode. The device using the hybrid buffer layer showed the highest electroluminescence characteristics among devices with other buffer layers. The high hole-injection efficiency of HATCN was shown by the J-F curve of hole-only devices, and the plasma protection performance of MoO3 was shown by atomic force microscope surface morphology images of the buffer layer film after O2 plasma treatment.


Nanotechnology | 2017

Spectral-distortion-free light extraction from organic light-emitting diodes using nanoscale photonic crystal

Yong Sub Shim; Kyu Nyun Kim; Ju Hyun Hwang; Cheol Hwee Park; Sun Gyu Jung; Young Wook Park; Byeong Kwon Ju

Despite their generally good performance, photonic crystal (PC)-based organic light-emitting diodes (OLEDs) encounter a serious spectral distortion problem. In this study, we obtained spectral-distortion-free PC-based OLEDs by lowering the pitch (period of the PC) to less than a half the emission wavelength, using a simple and scalable nanoscale process of laser interference lithography. The demonstrated OLEDs with 200 nm pitch-size nanoscale periodic hole arrays exhibited negligible changes in the Internal Commission on Illumination 1931 color coordinate of Δ (0.0104, 0.0078) and a peak wavelength of Δ0 nm (relative to the reference), while maintaining the function of the internal light extraction layer, manifested as a 23% enhancement of the external quantum efficiency (EQE). The enhancement of the EQE reached 85% after incorporating a micro-lens array. The improved light extraction, spectral-distortion-free characteristic, and excellent color stability over a broad range of viewing angles were successfully derived by performing finite difference time domain simulations.


Small | 2018

Junction-Free Electrospun Ag Fiber Electrodes for Flexible Organic Light-Emitting Diodes

Junhee Choi; Yong Sub Shim; Cheol Hwee Park; Ha Hwang; Jin Ho Kwack; Dong Jun Lee; Young Wook Park; Byeong Kwon Ju

Fabrication of junction-free Ag fiber electrodes for flexible organic light-emitting diodes (OLEDs) is demonstrated. The junction-free Ag fiber electrodes are fabricated by electrospun polymer fibers used as an etch mask and wet etching of Ag thin film. This process facilitates surface roughness control, which is important in transparent electrodes based on metal wires to prevent electrical instability of the OLEDs. The transmittance and resistance of Ag fiber electrodes can be independently adjusted by controlling spinning time and Ag deposition thickness. The Ag fiber electrode shows a transmittance of 91.8% (at 550 nm) at a sheet resistance of 22.3 Ω □-1 , leading to the highest OLED efficiency. In addition, Ag fiber electrodes exhibit excellent mechanical durability, as shown by measuring the change in resistance under repeatable mechanical bending and various bending radii. The OLEDs with Ag fiber electrodes on a flexible substrate are successfully fabricated, and the OLEDs show an enhancement of EQE (≈19%) compared to commercial indium tin oxide electrodes.


Nanoscale | 2015

Enhanced light out-coupling efficiency of organic light-emitting diodes with an extremely low haze by plasma treated nanoscale corrugation

Ju Hyun Hwang; Hyun Jun Lee; Yong Sub Shim; Cheol Hwee Park; Sun Gyu Jung; Kyu Nyun Kim; Young Wook Park; Byeong Kwon Ju


Advanced Functional Materials | 2014

Nanoshuttered OLEDs: Unveiled Invisible Auxiliary Electrode

Yong Sub Shim; Ju Hyun Hwang; Hyun Jun Lee; Kyung Bok Choi; Kyu Nyun Kim; Cheol Hwee Park; Sun Gyu Jung; Young Wook Park; Byeong Kwon Ju


SID Symposium Digest of Technical Papers | 2015

P-159L:Late-News Poster: Tungsten Oxide Buffer Layer on Silver Nanowires for Electrically Stable, Flexible, Transparent Hybrid Electrodes using Solution Process

Sun-Gyu Jung; Hyun Jun Lee; Ju Hyun Hwang; Yong Sub Shim; Kyu Nyun Kim; Cheol Hwee Park; Young Wook Park; Byeong Kwon Ju


SID Symposium Digest of Technical Papers | 2014

P-161L: Late-News Poster: High-Efficiency Inverted Top-Emitting Organic Light-Emitting Diodes with Random Corrugated Structure

Cheol Hwee Park; Hyun Jun Lee; Kyung Bok Choi; Ju Hyun Hwang; Kyu Nyun Kim; Yong Sub Shim; Sun Gyu Jung; Young Wook Park; Byeong Kwon Ju


SID Symposium Digest of Technical Papers | 2017

P-194: Control of the Viewing Angle Dependence by Inserting of Scattering Layer on Microcavity OLEDs

Cheol Hwee Park; Yong Sub Shim; Bong Han Bae; Jae Geun Kim; Young Wook Park; Byeong-Kwon Ju

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