Byeong W. Kwon, Ph.D.
Affiliations: | 2014 | Chemical Engineering | Washington State University, Pullman, WA, United States |
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Parents
Sign in to add mentorSu Y. Ha | grad student | 2014 | WSU | |
(Molybdenum dioxide (MoO2)-based anode for liquid hydrocarbon-fueled SOFC applications.) | ||||
Hyung Chul Ham | post-doc | KIST (Korea Institute of Science and Technology) (E-Tree) |
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Publications
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Moon S, Kwon BW, Chung Y, et al. (2019) Effect of Bismuth Sulfate Coated on Acidified CNT on Performance of Vanadium Redox Flow Battery Journal of the Electrochemical Society. 166 |
Oh JH, Kwon BW, Cho J, et al. (2019) Importance of Exsolution in Transition-Metal (Co, Rh, and Ir)-Doped LaCrO3 Perovskite Catalysts for Boosting Dry Reforming of CH4 Using CO2 for Hydrogen Production Industrial & Engineering Chemistry Research. 58: 6385-6393 |
Lee W, Kwon BW, Jung M, et al. (2019) Iron-vanadium redox flow batteries with polybenzimidazole membranes: High coulomb efficiency and low capacity loss Journal of Power Sources. 439: 227079 |
Lee W, Permatasari A, Kwon BW, et al. (2019) Performance evaluation of aqueous organic redox flow battery using anthraquinone-2,7-disulfonic acid disodium salt and potassium iodide redox couple Chemical Engineering Journal. 358: 1438-1445 |
Chu C, Kwon BW, Lee W, et al. (2019) Effect of temperature on the performance of aqueous redox flow battery using carboxylic acid functionalized alloxazine and ferrocyanide redox couple Korean Journal of Chemical Engineering. 36: 1732-1739 |
Lee W, Kwon BW, Kwon Y. (2018) Effect of carboxylic acid doped carbon nanotube catalyst on the performance of aqueous organic redox flow battery using the modified alloxazine and ferrocyanide redox couples. Acs Applied Materials & Interfaces |
Noh C, Kwon BW, Chung Y, et al. (2018) Effect of the redox reactivity of vanadium ions enhanced by phosphorylethanolamine based catalyst on the performance of vanadium redox flow battery Journal of Power Sources. 406: 26-34 |
Kwon BW, Oh JH, Kim GS, et al. (2018) The novel perovskite-type Ni-doped Sr0.92Y0.08TiO3 catalyst as a reforming biogas (CH4+ CO2) for H2 production Applied Energy. 227: 213-219 |
Lee C, Kwon BW, Kang M, et al. (2017) Improved performance of molten carbonate fuel cells with (Li/Na)2CO3 electrolytes by using BYS coated cathode at low operating temperatures International Journal of Hydrogen Energy. 42: 18514-18523 |
Kwon BW, Kim GS, Oh JH, et al. (2017) H 2 Production from Reforming Biogas (CH 4 +CO 2 ) in the Ni-doped Sr 0.92 Y 0.08 TiO 3 Perovskite Catalyst Energy Procedia. 105: 1942-1947 |