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Dive into the research topics where Chan-Hwa Hong is active.

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Featured researches published by Chan-Hwa Hong.


Journal of Nanoscience and Nanotechnology | 2018

Opposite Behavior of Multilayer Graphene/ Indium-Tin-Oxide p-Electrode for Gallium Nitride Based-Light Emitting Diodes Depending on Thickness of Indium-Tin-Oxide Layer

Tae Kyoung Kim; Yeo Jin Yoon; Seung Kyu Oh; Yu-Jung Cha; In Yeol Hong; Moon Uk Cho; Chan-Hwa Hong; Hong Kyw Choi; Joon Seop Kwak

In order to improve EQE, we have investigated on the role of multilayer graphene (MLG) on the electrical and optical properties of GaN based light-emitting diodes (LEDs) with ultrathin ITO (5 nm or 10 nm)/p-GaN contacts. The MLG was transferred on the ITO/p-GaN to decrease sheet resistance of thin ITO p-electrode and improve the current spreading of LEDs. The LEDs with the ITO 5 nm and MLG/ITO 5 nm structures showed 3.25 and 3.06 V at 20 mA, and 11.69 and 13.02 mW/sr at 400 mA, respectively. After forming MLG on ITO 5 nm, the electro-optical properties were enhanced. Furthermore, the GaN based-LEDs applied to the ITO 10 nm, and MLG/ITO (10 nm) structures showed 2.95 and 3.06 V at 20 mA, and 20.28 and 16.74 mW/sr at 400 mA, respectively. The sheet resistance of the MLG transferred to ITO 5 nm was decreased approximately four fold compared to ITO 5 nm. On the other hand, the ITO 10 nm and MLG/ITO 10 nm showed a similar sheet resistance; the transmittance of the LEDs with ITO 10 nm decreased to 16% due to MLG formation on ITO. This suggests that the relationship between the sheet resistance and transmittance according to the ITO film thickness affected the electro-optical properties of the LEDs with a transparent p-electrode with the MLG/ITO dual structure.


Journal of Semiconductor Technology and Science | 2016

Effects of Mg Suppressor Layer on the InZnSnO Thin-Film Transistors

Chang-Woo Song; Kyung-Hyun Kim; Ji-Woong Yang; Dae Hwan Kim; Yong-Jin Choi; Chan-Hwa Hong; Jae-Heon Shin; Hyuck-In Kwon; Sang-Hun Song; Woo-Seok Cheong

We investigate the effects of magnesium (Mg) suppressor layer on the electrical performances and stabilities of amorphous indium-zinc-tin-oxide (a- ITZO) thin-film transistors (TFTs). Compared to the ITZO TFT without a Mg suppressor layer, the ITZO:Mg TFT exhibits slightly smaller field-effect mobility and much reduced subthreshold slope. The ITZO:Mg TFT shows improved electrical stabilities compared to the ITZO TFT under both positive-bias and negative-bias-illumination stresses. From the Xray photoelectron spectroscopy O1s spectra with fitted curves for ITZO and ITZO:Mg films, we observe that Mg doping contributes to an enhancement of the oxygen bond without oxygen vacancy and a reduction of the oxygen bonds with oxygen vacancies. This result shows that the Mg can be an effective suppressor in a-ITZO TFTs.


Ceramics International | 2014

Fully crystallized ultrathin ITO films deposited by sputtering with in-situ electron beam irradiation for touch-sensitive screens

Sung-Min Wie; Chan-Hwa Hong; Seung Kyu Oh; Woo-Seok Cheong; Young Joon Yoon; Joon Seop Kwak


Journal of Nanoscience and Nanotechnology | 2013

Electron beam irradiated ITO films as highly transparent p-type electrodes for GaN-based LEDs.

Chan-Hwa Hong; Wie Sm; Moo-Jin Park; Joon Seop Kwak


Journal of Nanoscience and Nanotechnology | 2012

Improved electrical and optical properties of ITO/Ag/ITO films by using electron beam irradiation and their application to ultraviolet light-emitting diode as highly transparent p-type electrodes.

Chan-Hwa Hong; Young Je Jo; Kim Ha; Moo-Jin Park; Joon Seop Kwak


SID Symposium Digest of Technical Papers | 2016

25‐3: A Single‐Layer Capacitive Touch Sensor for Vehicle Display

Chan-Hwa Hong; Woo-Hyung Seo; Ji-Woong Yang; Yun-Been Na; Woo-Seok Cheong


Surface & Coatings Technology | 2015

Low temperature fabrication of indium-tin oxide film by using ionized physical vapor deposition method

Woo-Seok Cheong; Chan-Hwa Hong; Jae-Heon Shin; Kyung-Hyun Kim; Nae-Man Park; Shin-Jae You; Jung-Hyung Kim; Yeong-Shin Kim


Journal of Nanoscience and Nanotechnology | 2012

Thin film transistor based on TiOx prepared by DC magnetron sputtering.

Sung Mook Chung; Jae-Heon Shin; Chan-Hwa Hong; Woo-Seok Cheong


Journal of Nanoscience and Nanotechnology | 2017

Effects of Er-Doping on Amorphous InZnSnO/InZnSnO:Er Double-Channel Thin-Film Transistors

Ji-Woong Yang; Yun-Been Na; Jae-Heon Shin; Chan-Hwa Hong; Woo-Hyung Seo; Kyung-Hyun Kim; Chang-Woo Song; Sang-Hun Song; Hyuck-In Kwon; Woo-Seok Cheong


Journal of Nanoscience and Nanotechnology | 2017

Design of Cell-Patterns for Large-Sized Window Unified Touch Screen Panels with High Sensitivity

Chang-Ho Lee; Chan-Hwa Hong; Yun-Been Na; Jeong-Jin Park; Hyuck-In Kwon; Woo-Seok Cheong

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Woo-Seok Cheong

Electronics and Telecommunications Research Institute

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Jae-Heon Shin

Electronics and Telecommunications Research Institute

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Joon Seop Kwak

Sunchon National University

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Kyung-Hyun Kim

Electronics and Telecommunications Research Institute

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Nae-Man Park

Electronics and Telecommunications Research Institute

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Bosul Kim

Electronics and Telecommunications Research Institute

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Chang-Woo Song

Electronics and Telecommunications Research Institute

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Ji-Woong Yang

Electronics and Telecommunications Research Institute

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Seung Kyu Oh

Sunchon National University

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