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Featured researches published by Myounghoon Choun.


Angewandte Chemie | 2015

Designing a Highly Active Metal‐Free Oxygen Reduction Catalyst in Membrane Electrode Assemblies for Alkaline Fuel Cells: Effects of Pore Size and Doping‐Site Position

Seonggyu Lee; Myounghoon Choun; Youngjin Ye; Jaeyoung Lee; Yeongdong Mun; Eunae Kang; Jongkook Hwang; Young-Ho Lee; Chae-Ho Shin; Seung-Hyeon Moon; Soo-Kil Kim; Eunsung Lee; Jinwoo Lee

To promote the oxygen reduction reaction of metal-free catalysts, the introduction of porous structure is considered as a desirable approach because the structure can enhance mass transport and host many catalytic active sites. However, most of the previous studies reported only half-cell characterization; therefore, studies on membrane electrode assembly (MEA) are still insufficient. Furthermore, the effect of doping-site position in the structure has not been investigated. Here, we report the synthesis of highly active metal-free catalysts in MEAs by controlling pore size and doping-site position. Both influence the accessibility of reactants to doping sites, which affects utilization of doping sites and mass-transport properties. Finally, an N,P-codoped ordered mesoporous carbon with a large pore size and precisely controlled doping-site position showed a remarkable on-set potential and produced 70% of the maximum power density obtained using Pt/C.


RSC Advances | 2015

Diagnosis of the measurement inconsistencies of carbon-based electrocatalysts for the oxygen reduction reaction in alkaline media

Dongyoon Shin; Beomgyun Jeong; Myounghoon Choun; Joey D. Ocon; Jaeyoung Lee

Finding inexpensive alternative catalysts for the oxygen reduction reaction (ORR) is considered as one of the most overriding challenges in the development of electrochemical technologies. Although significant progress has been made in developing carbon-based ORR catalysts, there is difficulty in judging improvements in the catalysts due to the inconsistent results arising from differences in experimental conditions. In this review, we provide a diagnosis of the influence of key factors in the measured ORR activity of catalysts. Knowing the exact conditions when measuring ORR activity is of paramount importance in establishing a reference for relevant comparison of ORR performance in developed catalysts.


Chemsuschem | 2016

Alkaline Ammonia Electrolysis on Electrodeposited Platinum for Controllable Hydrogen Production

Jieun Gwak; Myounghoon Choun; Jaeyoung Lee

Ammonia is beginning to attract a great deal of attention as an alternative energy source carrier, because clean hydrogen can be produced through electrolytic processes without the emission of COx . In this study, we deposited various shapes of Pt catalysts under potentiostatic mode; the electrocatalytic oxidation behavior of ammonia using these catalysts was studied in alkaline media. The electrodeposited Pt was characterized by both qualitative and quantitative analysis. To discover the optimal structure and the effect of ammonia concentration, the bulk pH value, reaction temperature, and applied current of ammonia oxidation were investigated using potential sweep and galvanostatic methods. Finally, ammonia electrolysis was conducted using a zero-gap cell, producing highly pure hydrogen with an energy efficiency over 80 %.


Angewandte Chemie | 2017

Tree-Bark-Shaped N-Doped Porous Carbon Anode for Hydrazine Fuel Cells

Jaehoon Jeong; Myounghoon Choun; Jaeyoung Lee

Metal-free N-doped porous carbon has great potential as a catalyst for hydrazine oxidation in direct hydrazine fuel cells (DHFCs). However, previous studies have reported only half-cell characterization, and the effect of the pore size distribution has not been intensively investigated. Herein, we report the synthesis of highly active, metal-free N-doped carbon (NDC) by controlling the pore size distribution, and for the first time, the effect of the pore size distribution on the anode performance in a DHFC is investigated. As a result, tree-bark-shaped NDC with meso/macroporous (>10 nm) structures exhibit a remarkable power density of 127.5 mW cm-2 in a DHFC.


Catalysis Today | 2016

Effect of transition metal induced pore structure on oxygen reduction reaction of electrospun fibrous carbon

Dongyoon Shin; Xianghua An; Myounghoon Choun; Jaeyoung Lee


Electrochemistry Communications | 2012

Atomic-layer-deposited TiO2 on cathode gas diffusion layer for low humidity operation in hydrogen fuel cells

Myounghoon Choun; Sangho Chung; Hongrae Jeon; Sunghyun Uhm; Jaeyoung Lee


Journal of Physical Chemistry C | 2016

Nitrogen-Deficient ORR Active Sites Formation by Iron-Assisted Water Vapor Activation of Electrospun Carbon Nanofibers

Beomgyun Jeong; Dongyoon Shin; Myounghoon Choun; Sandip Maurya; Jaeyoon Baik; Bongjin Simon Mun; Seung-Hyeon Moon; Dangsheng Su; Jaeyoung Lee


ACS Catalysis | 2015

Influence of Solution pH on Pt Anode Catalyst in Direct Formic Acid Fuel Cells

Jiyong Joo; Myounghoon Choun; Jaehoon Jeong; Jaeyoung Lee


Journal of Energy Chemistry | 2016

Atomic layer deposition of ultrathin layered TiO2 on Pt/C cathode catalyst for extended durability in polymer electrolyte fuel cells

Sangho Chung; Myounghoon Choun; Beomgyun Jeong; Jae Kwang Lee; Jaeyoung Lee


Current Applied Physics | 2014

Controlled water flooding of polymer electrolyte fuel cells applying superhydrophobic gas diffusion layer

Jiyong Joo; Myounghoon Choun; Kwang-Dae Kim; Sunghyun Uhm; Young Dok Kim; Jaeyoung Lee

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Jaeyoung Lee

Gwangju Institute of Science and Technology

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Dongyoon Shin

Gwangju Institute of Science and Technology

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Beomgyun Jeong

Gwangju Institute of Science and Technology

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Jae Kwang Lee

Gwangju Institute of Science and Technology

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Jiyong Joo

Gwangju Institute of Science and Technology

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Seung-Hyeon Moon

Gwangju Institute of Science and Technology

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Hongrae Jeon

Gwangju Institute of Science and Technology

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Jaehoon Jeong

Gwangju Institute of Science and Technology

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Jin Won Kim

Gwangju Institute of Science and Technology

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Jungsuk Kim

Korea Electric Power Corporation

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