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Featured researches published by Kyeng-Bae Ma.


Chemsuschem | 2017

Sulfur-Doped Porphyrinic Carbon Nanostructures Synthesized with Amorphous MoS2 for the Oxygen Reduction Reaction in an Acidic Medium

Hyun-Suk Park; Sang-Beom Han; Da-Hee Kwak; Gyu-Ho Lee; In-Ae Choi; Do-Hyoung Kim; Kyeng-Bae Ma; Min-Cheol Kim; Hye-Jin Kwon; Kyung-Won Park

To develop doped carbon nanostructures as non-precious metal cathode catalysts, nanocomposites were synthesized by using SBA-15 and 5,10,15,20-tetrakis(4-methoxyphenyl)porphyrin-iron(III) chloride with different ratios of amorphous MoS2 precursor. From various analyses, it was found that, during pyrolysis at 900 °C under an N2 atmosphere, the amorphous MoS2 precursor decomposed into Mo and S, facilitating the formation of graphene sheet-like carbon with MoC and doping of sulfur in the carbon. In the nanocomposite formed from 10 wt % MoS2 precursor (denoted as Mo/S/PC-10), most of the MoS2 was decomposed, thus forming S-doped carbon, which was grown on the MoC phase without crystalline MoS2 . Furthermore, Mo/S/PC-10 exhibited better performance in the oxygen reduction reaction (specific activity of 1.23 mA cm-2 at 0.9 V and half-wave potential of 0.864 V) than a commercial Pt catalyst, owing to a heteroatom-doped carbon nanostructure with a fairly high specific surface area. In the polarization curve of the unit-cell performance measured at 80 °C under ambient pressure, Mo/S/PC-10 as a cathode catalyst exhibited an optimal power density of 314 mW cm-2 and a current density of 280 mA cm-2 at 0.6 V.


Applied Catalysis B-environmental | 2017

Fe/N/S-doped mesoporous carbon nanostructures as electrocatalysts for oxygen reduction reaction in acid medium

Da-Hee Kwak; Sang-Beom Han; Young-Woo Lee; Hyun-Suk Park; In-Ae Choi; Kyeng-Bae Ma; Min-Cheol Kim; Si-Jin Kim; Do-Hyoung Kim; Junginn Sohn; Kyung-Won Park


Applied Catalysis B-environmental | 2017

Doped porous carbon nanostructures as non-precious metal catalysts prepared by amino acid glycine for oxygen reduction reaction

In-Ae Choi; Da-Hee Kwak; Sang-Beom Han; Jin-Young Park; Hyun-Seok Park; Kyeng-Bae Ma; Do-Hyoung Kim; Ji-Eun Won; Kyung-Won Park


ACS Catalysis | 2016

Chemically Regenerative Redox Fuel Cells Using Iron Redox Couples as a Liquid Catalyst with Cocatalysts

Sang-Beom Han; Da-Hee Kwak; Hyun Suk Park; In-Ae Choi; Jinyoung Park; Kyeng-Bae Ma; Ji-Eun Won; Do-Hyoung Kim; Si-Jin Kim; Min-Cheol Kim; Kyung-Won Park


Journal of Catalysis | 2018

PtIr/Ti4O7 as a bifunctional electrocatalyst for improved oxygen reduction and oxygen evolution reactions

Ji-Eun Won; Da-Hee Kwak; Sang-Beom Han; Hyun-Suk Park; Jin-Young Park; Kyeng-Bae Ma; Do-Hyoung Kim; Kyung-Won Park


Journal of Catalysis | 2018

Enhanced oxygen reduction reaction of Pt deposited Fe/N-doped bimodal porous carbon nanostructure catalysts

Jin-Young Park; Da-Hee Kwak; Kyeng-Bae Ma; Sang-Beom Han; Geun Seok Chai; Sang-Kyung Kim; Dong-Hyun Peck; Chang-Soo Kim; Anthony Kucernak; Kyung-Won Park


ACS Sustainable Chemistry & Engineering | 2018

Direct Ethanol Fuel Cells with Superior Ethanol-Tolerant Nonprecious Metal Cathode Catalysts for Oxygen Reduction Reaction

Kyeng-Bae Ma; Da-Hee Kwak; Sang-Beom Han; Hyun-Suk Park; Do-Hyoung Kim; Ji-Eun Won; Suk-Hui Kwon; Min-Cheol Kim; Sang-Hyun Moon; Kyung-Won Park


Journal of Power Sources | 2018

A chemically regenerative redox fuel cell using (2,2,6,6-tetramethylpiperidin-1-yl)oxyl redox reaction in acid medium

Sang-Beom Han; Da-Hee Kwak; Hyun Suk Park; Jin-Young Park; Kyeng-Bae Ma; Ji-Eun Won; Do-Hyoung Kim; Min-Cheol Kim; Kyung-Won Park


International Journal of Hydrogen Energy | 2018

High-performance direct ethanol fuel cell using nitrate reduction reaction

Kyeng-Bae Ma; Sang-Beom Han; Suk-Hui Kwon; Da-Hee Kwak; Kyung-Won Park


International Journal of Hydrogen Energy | 2018

The role of arginine as nitrogen doping and carbon source for enhanced oxygen reduction reaction

Do-Hyoung Kim; Da-Hee Kwak; Sang-Beom Han; Hyun-Suk Park; Jin-Young Park; Ji-Eun Won; Kyeng-Bae Ma; Seok-Hyeon Yun; Suk-Hui Kwon; Moon Hyun Koh; Kyung-Won Park

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