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Dive into the research topics where Jin-Hyeon Yun is active.

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Featured researches published by Jin-Hyeon Yun.


Applied Physics Express | 2013

Free-Standing GaN Layer by Combination of Electrochemical and Photo-Electrochemical Etching

Lee-Woon Jang; Dae-Woo Jeon; A. Y. Polyakov; Han-Su Cho; Jin-Hyeon Yun; Dong-Seob Jo; Jin-Woo Ju; Jong-Hyeob Baek; In-Hwan Lee

A free-standing GaN layer was produced by combining electrochemical (EC) etching from the front surface, photo-electrochemical (PEC) etching from the back surface, and subsequent regrowth of GaN on the porous template thus produced. The EC etching resulted in the formation of etch channels on the surface portion of the starting film, whereas the back-side PEC etching gave rise to a columnar structure supporting the entire film. When the n-GaN layer was regrown on such template, the underlying columnar structure provided weak places for easy separation and transfer of the film by mechanical bonding.


Applied Physics Express | 2015

Enhanced optical properties of nanopillar light-emitting diodes by coupling localized surface plasmon of Ag/SiO2 nanoparticles

Jin-Hyeon Yun; Han-Su Cho; Kang-Bin Bae; Selvakumar Sudhakar; Yeon Su Kang; Jong-Soo Lee; A. Y. Polyakov; In-Hwan Lee

We fabricated nanopillar light-emitting diodes (LEDs) embedded with Ag/SiO2 nanoparticles, and investigated the energy coupling processes between the localized surface plasmons of nanoparticles and the active quantum well regions of nanopillar LEDs. These nanoparticle-embedded nanopillar LEDs showed considerable increases in photoluminescence and electroluminescence intensities, compared with reference nanopillar LEDs. The observed optical enhancement was explained by the increased spontaneous emission rate caused by energy coupling from excitons in the InGaN/GaN quantum well active region of the LEDs to the localized surface plasmon modes of the Ag/SiO2 nanoparticles. A strongly enhanced characteristic photoluminescence decay also confirmed such an explanation.


ACS Applied Materials & Interfaces | 2014

Facile Fabrication of Free-Standing Light Emitting Diode by Combination of Wet Chemical Etchings

Lee-Woon Jang; Dae-Woo Jeon; Tae-Hoon Chung; A. Y. Polyakov; Han-Su Cho; Jin-Hyeon Yun; Jin-Woo Ju; Jong-Hyeob Baek; Joowon Choi; In-Hwan Lee

Free-standing GaN light-emitting diode (LED) structure with high crystalline quality was fabricated by combining electrochemical and photoelectrochemical etching followed by regrowth of LED structure and subsequent mechanical detachment from a substrate. The structural quality and composition of the regrown LED film thus produced was similar to standard LED, but the photoluminescence and electroluminescence intensity of the LED structures on the etched template were several times higher than for standard LED. The performance enhancement was attributable to additional light scattering and improved crystalline quality as a result of the combined etching scheme.


Optics Letters | 2018

Enhanced luminescence of CsPbBr 3 perovskite nanocrystals on stretchable templates with Au/SiO 2 plasmonic nanoparticles

Jin-Hyeon Yun; A. Y. Polyakov; Kyu-Cheol Kim; Yeon-Tae Yu; Dong-Hyun Lee; In-Hwan Lee

We propose stretchable plasmonic templates of Au and Au/SiO2 nanoparticles (NPs) to improve the luminescence of CsPbBr3 perovskite nanocrystals (PNCs). These templates are highly flexible and consist of polymer-metal NP composites that facilitate the luminescence enhancement by localized surface plasmons (LSPs) due to coupling with metal NP. This template also prevents the degradation of carrier transport properties for perovskite light-emitting diodes by embedding metal NPs in polymer. The luminescence of PNC film on the template with Au NPs decreases by 21% compared to PNC films on the reference (polymer film without metal NPs), while it increases by 54% for the templates with Au/SiO2 NPs. The observed effects are explained by the luminescence enhancement due to coupling to LSPs formed by the Au/SiO2 NPs and by the prevalence of electron tunneling and dumping for Au NPs.


Sensors and Actuators B-chemical | 2014

Glucose-assisted synthesis of Cu2O shuriken-like nanostructures and their application as nonenzymatic glucose biosensors

Rizwan Khan; Rafiq Ahmad; Prabhakar Rai; Lee-Woon Jang; Jin-Hyeon Yun; Yeon-Tae Yu; Yoon-Bong Hahn; In-Hwan Lee


Journal of Alloys and Compounds | 2016

Enhanced photoluminescence of ZnO nanorods via coupling with localized surface plasmon of Au nanoparticles

Rizwan Khan; Jin-Hyeon Yun; Kang-Bin Bae; In-Hwan Lee


Journal of Alloys and Compounds | 2014

Low temperature preparation of CuO nanospheres and urchin-shaped structures via hydrothermal route

Rizwan Khan; Mohammad Vaseem; Lee-Woon Jang; Jin-Hyeon Yun; Yoon-Bong Hahn; In-Hwan Lee


ECS Journal of Solid State Science and Technology | 2016

Electrical, Luminescent and Structural Properties of Nanopillar GaN/InGaN Multi-Quantum-Well Structures Prepared by Dry Etching

A. Y. Polyakov; Han-Su Cho; Jin-Hyeon Yun; In-Hwan Lee; E. B. Yakimov; N. B. Smirnov; K. D. Shcherbachev


Physica Status Solidi-rapid Research Letters | 2015

Photoluminescence enhancement by localized surface plasmons in AlGaN/GaN/AlGaN double heterostructures

A. Y. Polyakov; Jin-Hyeon Yun; Haeng-Keun Ahn; Alexander Usikov; E. B. Yakimov; S.A. Tarelkin; N. B. Smirnov; K. D. Shcherbachev; Heikki Helava; Yuri N. Makarov; Sergey Kurin; Sergey Didenko; B P Papchenko; In-Hwan Lee


Physica Status Solidi (a) | 2018

Large Area Polymer Composite Films Embedded with Colloidal Quantum Dots for Efficient White Light Generation

Kang-Bin Bae; Won-Wook Lee; Hyeon-Yong Song; Jin-Hyeon Yun; A. Y. Polyakov; In-Hwan Lee

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A. Y. Polyakov

National University of Science and Technology

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Han-Su Cho

Chonbuk National University

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Lee-Woon Jang

Chonbuk National University

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Kang-Bin Bae

Chonbuk National University

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Rizwan Khan

Chonbuk National University

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Yeon-Tae Yu

Chonbuk National University

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Dae-Woo Jeon

Chonbuk National University

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Jin-Woo Ju

Chonbuk National University

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Jong-Hyeob Baek

Electronics and Telecommunications Research Institute

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