Publications

100 refereed journal papers since 2008. Asterisks mark corresponding authors.

Google Scholar profile
2026 6 papers+
100
Engineering MnNiPx Cathode via Dual Role of Mn: Simultaneous Enhancement of Activity and Intermittent Operation Durability
I. Kim, J. Choi, S. Lee, J. Park, C. Lee, J. Seo, J. Kwon, G. Doo, H. Park, D. Lee, W. Cho, C. Kim, N. V. Myung, S. Han, B. An*, M. Kim*, and H. Cho*
Adv. Func. Mater. (2026).
98
Interfacial engineering with a carbonyl-functionalized truxene self-assembled monolayer for high efficiency and stable NiOX-based perovskite solar cells
G. Lee, J. Kim, J. Kim, H. Cho, S. Jung, Y. Hayashi, T. Ito, K. Yamaguchi, Y. Saegusa, H. Takahashi, H. Sato, T. Miyasaka, G. Kim*, and S. Oh*
Chem. Eng. J. 537 176106 (2026).
97
Enhancing proton irradiation tolerance of a-IGZO thin-film transistors through hydrogen doping
S. Oh, H. Kim, J. Oh, H. Kim, S. Kim, H. Cho, and C. Kim*
J. Mater. Chem. C 14(9) 3637 (2026).
96
Quantifying the economic viability of green hydrogen production via proton exchange membrane electrolysis under uncertainties in renewable energy supply and cost
H. Kim, H. Cho, S. Kim, H. Jung, and J. Park*
J. Power Sources 676, 239874 (2026).
95
Dynamic modeling of alkaline water electrolysis cell with consideration of two-phase bubble transport for renewables dedicated operation
D. Jang, H. Shin, H. Shin, H Cho, W. Cho, and S. Kang*
Renew. Sustain. Energy Rev. 228 116579 (2026).
2025 16 papers+
94
Degradation Behavior of Co3O4 Spinel OER Catalyst Under Dynamic Operation and Thermally Driven Healing in Alkaline Water Electrolysis
M. Seo, Y. Yun, G. Doo, H. Park, S. Kim, W. Cho, C. Kim, C. Lee*, S. Lee*, M. Kim*, and H. Cho*
Small Method 9(12), e01347 (2025).
93
Hollow Bi2Te3 nanowire supported Ir for highly active and durable oxygen evolution reaction in proton exchange membrane water electrolysis
Y. Yun, K. Yoon, S. Byun, H. Park, G. Doo, S. Kim, M. Kim, H. Cho, B. An, B. Koo, and C. Lee*
Nano Res. 18(11), 94908097 (2025).
91
One-Pot Monomer-Level Fabrication of Anion Exchange Membranes for High-Performance Water Electrolysis
J. Choi, H. Kim, S. Jeon, M. Lee, Y. Nam, Y. Park, S. An, M. Kim, C. Lee, H. Park, H. Cho, A. Lee*, and J. Lee*
Small 21, e04491 (2025).
90
Long-Term, Stable Alkaline Electrolysis with a Durable Crystalline Polybenzimidazole Membrane
T. Lee, M. Kim, H. Cho, S. Lee, J. Kim, A. Munsur, B. Lee, J. Chae, J. Han, H. Park, J. Jang, S. Yoo, S. Peak, S. Lee*, H. Cho*, S. Park*, K. Song*, and H. Kim*
Small 21, e02810 (2025).
89
Optimizing Hybrid-phase IrO2 Catalysts with Ti for Enhanced Oxygen Evolution Reaction for Proton Exchange Membrane Water Electrolysis
Y. Yun, J. Choi, Y. Park, H. Park, G. Doo, M. Kim, S. Han, J. Park, S. Lee, C. Lee*, and H. Cho*
Small 21, 2503601 (2025).
88
Versatile decal-transfer method for fabricating and analyzing microporous layers in polymer electrolyte membrane water electrolysis
G. Jung, Y. Yun, S. An, D. Kim, M. Sepe, S. Choi, J. Seo, M. Kim, S. Lee, H. Park, S. Shimpalee, H. Kim, C. Lee, G. Doo*, and H. Cho*
Small 21, 2500086 (2025).
87
Achieving Pt-coating-free anodes using double-layered catalyst layer structure for polymer electrolyte membrane water electrolysis
D. Kim, G. Jung, Y. Yun, J. Park, S. An, C. Lee, S. Lee, H. Park, S. Kim, H. Cho, H. Kim, N. Jung, G. Doo, and M. Kim
J. Mater. Chem. A 13, 39748 (2025).
86
Structural and Compositional Optimization of Fe-Co-Ni Ternary Amorphous Electrocatalysts for Efficient Oxygen Evolution in Anion Exchange Membrane Water Electrolysis
C. Lee, Y. Yun, S. Kim, G. Doo, S. Lee, H. Park, Y. Park, J. Shin, H. Cho, S. Kim, E. Cho*, C. Jung*, and M. Kim*
Small 21, 2405468 (2025).
85
High-Performance Nickel-Bismuth Oxide Electrocatalysts Applicable to Both the HER and OER in Alkaline Water Electrolysis
S. Jo, B. Kang, S. An, H. Jung, J. Kwon, H. Oh, J. Lim, P. Choi, K. Cho, H. Cho, M. Kim*, J. Lee*, J. Eom*, and T. Fuller
ACS Appl. Mater. Interfaces 17(8), 11946 (2025).
84
Morphological tuning-driven high-performance separator for alkaline water electrolyzer through the surface modification of mechanical support
H. Lee, H. Park, J. Lee, H. Cho, M. Kim, C. Lee, C. Bernacker, S. Raut, S. Lee*, and W. Cho*
J. Mem. Sci. 719, 123727 (2025).
83
The impact of degradation on the economics of green hydrogen
J. Park, S. Kang, S. Kim, H. Kim, H. Cho, C. Lee, M. Kim*, and J. Lee*
Renew. Sustain. Energy Rev. 213, 115472 (2025).
82
Comparative techno-economic evaluation of alkaline and proton exchange membrane electrolysis for hydrogen production amidst renewable energy source volatility
J. Park, S. Kang, S. Kim, H. Kim, H. Cho, and J. Lee*
Energy Convers. Manag. 325, 119423 (2025).
81
MoS2@MWCNTs Core-shell Heterostructure for Enhanced Oxygen Evolution Reaction in Alkaline Water Electrolysis
H. Nguyen, K. Jang, J. Kim, K. Chae, H. Jung, M. Kim, C. Lee, Y. Lee, K. Jung, S. Lee, H. Cho*, H. Yoon*, and Y. Cho*
J. Environ. Chem. Eng. 13, 115060 (2025).
80
Alkaline stable cross-linked anion exchange membrane based on steric hindrance effect and microphase-separated structure for water electrolyzer
M. Manohar, J. Lee, H. Park, Y. Choi, B. An, J. Albert, G. Doo, S. Lee, C. Lee, J. Seo, W. Cho, H. Cho*, and M. Kim*
Materials Today Energy 47, 101739 (2025).
79
A Triazine-Based Hole Transport Material for Durable Perovskite Solar Cells
B. Lee, S. Lee, Y. Hayashi, H. Takahashi, Y. Saegusa, H. Sato, N. Shibayama, H. Cho, T. Miyasaka, G. Kim*, and S. Oh*
Adv. Energ. Sust. Res. 6, 2400299 (2025).
2024 11 papers+
78
Interfacially Assembled Anion Exchange Membranes for Water Electrolysis
H. Kim, S. Jeon, J. Choi, Y. Park, S. Park, M. Lee, Y. Nam, H. Park, M. Kim, C. Lee, S. An, J. Jung, S. Kim, J. Kim, H. Cho*, A. Lee*, and J. Lee*
ACS Nano 18(47), 32694 (2024).
77
Enhanced oxygen evolution reaction in alkaline water electrolysis using bimetallic NiFe metal-organic frameworks integrated with carbon nanotubes
S. Cho, Y. Oh, H. Nguyen, K. Chae, N. Tran, Y. Lee, J. Hong*, D. Shin*, H. Cho*, and Y. Cho*
Int. J. Hydrogen Energy 90, 747 (2024).
76
Hydrogen-bonded QSEBS/ZrO2 mixed matrix anion exchange membranes for water electrolyzer
J. Kim, Y. Yun, H. Park, J. Alberts, G. Doo, S. Lee, J. Seo, C. Lee, M. Kim, H. Cho, S. Kim, J. Lee, Y. Choi*, and J. Kim
Fuel 376, 132684 (2024).
75
Enhancing the economic viability and reliability of renewables based electricity supply through Power-to-Gas-to-Power with green hydrogen
J. Park, S. Kang, S. Kim, H. Kim, H. Cho, and J. H. Lee
Energy Convers. Manag. 310, 118485 (2024).
74
Multiscale Modeling of Oxygen Evolution Through Generated Bilayer Porous Transport Layers for PEMWE Performance Improvement
M. Sepe, G. Jung, G. Doo, C. Lee, H. Cho, N. Tippayawong, and S. Shimpalee
J. Electrochem. Soc. 171, 054501 (2024).
73
Reverse-Current Tolerance for Hydrogen Evolution Reaction Activity of Lead-Decorated Nickel Catalysts in Zero-Gap Alkaline Water Electrolysis Systems
S. Jung, Y. Kim, B. Lee, H. Jung, J. Kwon, J. Lee, K. Kim, Y. Kim, K. Kim, H. Cho, J. Park, J. Han, and Y. Kim
Adv. Func. Mater. 34, 2316150 (2024).
72
Organic catalysis promotor for advanced water electrolysis
S. Lee, C. Lee, M. Kim, G. Doo, M. Seo, H. Park, Y. Lee, Y. Yun, I. Kim, and H. Cho*
Adv. Func. Mater. 34, 2312206 (2024).
71
Bulk-Heterojunction Electrocatalysts in Confined Geometry Boosting Stable, Acid/Alkaline-Universal Water Electrolysis
G. Jang, S. Kim, J. Choi, J. Park, S. An, J. Baek, Y. Li, T. Liu, E. Kim, J. Lee, H. Wang, M. Kim, H. Cho, X. Zheng, J. Yoo, K. Seo, and J. Park*
Adv. Energy Mater. 14, 2303924 (2024).
70
Techno-economic analysis of solar powered green hydrogen system based on multi-objective optimization of economics and productivity
J. Park, S. Kang, S. Kim, H. Cho, S. Heo, and J. Lee*
Energy Convers. Manag. 299, 117823 (2024).
69
Study on the effect of IrO2/TiO2 catalyst composition coated on porous transport layer on the performance and durability of polymer electrolyte membrane water electrolysis
T. Doan, T. Nguyen, Y. Jung, C. Lee, M. Kim, S. Lee, H. Cho*, and T. Kim*
Int. J. Hydrog. Energy 55, 839 (2024).
68
Bimetallic metal organic framework-derived Co9S8-MoS2 nanohybrids as an efficient dual functional electrocatalyst towards the hydrogen and oxygen evolution reactions
S. Lee, Y. Park, H. Lim, S. Son, Y. Cho, J. Park, H. Cho*, A. Jang*, and Y. Rhee*
J. Ind. Eng. Chem. 130, 317 (2024).
2023 18 papers+
67
Boosting oxygen evolution reaction activity with Mo incorporated NiFe-LDH electrocatalyst for efficient water electrolysis
A. Tamboli, Y. Jung, J. Kim, B. Kim, W. Kim, M. Kim, C. Lee, K. Kim, C. Lim, K. Kim, H. Cho*, and C. Kim*
Chemosphere 344, 140314 (2023).
66
Electrochemical Dealloying of Ni-Rich Pt-Ni Nanoparticle Network for Robust Oxygen-Reduction Electrocatalysts
J. Yoo, Y. Park, J. Choi, J. Roh, K. Shin, H. Cho, E. Cho, C. Lee*, and H. Lee*
ACS Sustainable Chem. Eng. 11, 42 (2023).
65
Rational Design of a Stable Fe-rich Ni-Fe Layered Double Hydroxide for the Industrially Relevant Dynamic Operation of Alkaline Water Electrolyzers
M. Mehdi, B. An, H. Kim, S. Lee, C. Lee, M. Seo, M. Noh, W. Cho, C. Kim, C. Choi, B. Kim, M. Kim, and H. Cho*
Adv. Energy Mater. 13, 2204403 (2023).
64
Catalyst-support interaction in Zr2ON2-supported IrOx electrocatalysts to break the trade-off relationship between the activity and stability in the acidic oxygen evolution reaction
C. Lee, K. Shin, Y. Park, Y. Yun, M. Kim, W. Cho, C. Kim, H. Lee, S. Lee, G. Henkelman, and H. Cho*
Adv. Funct. Mater. 33, 2301557 (2023).
63
Electrochemical partial reduction of Ni(OH)2 to Ni(OH)2/Ni via coupled oxidation of an interfacing NiAl intermetallic compound for robust hydrogen evolution
Y. Yun, K. Kim, C. Lee, B. An, J. Kwon, S. Lee, J. Lee, M. Kim, S. Kim, J. Park, B. Kim, and H. Cho*
J. Energy Chem. 82, 560 (2023).
62
Green hydrogen to tackle the power curtailment: Meteorological data-based capacity factor and techno-economic analysis
J. Park, K. Ryu, C. Kim, W. Cho, M. Kim, J. Lee, H. Cho*, and J. Lee*
Appl. Energ. 340, 121016 (2023).
61
Prognotics and health management of alkaline water electrolyzer: Techno-economic analysis considering replacement moment
H. Lee, J. Gu, B. Lee, H. Cho*, and H. Lim*
Energy and AI 13, 100251 (2023).
60
Oxygen bubble transport in a porous transport layer of polymer electrolyte water electrolyzer
D. Jeon, S. Kim, M. Kim, C. Lee, and H. Cho*
J. Power Sources 553, 232322 (2023).
59
Thin film composite membranes as a new category of alkaline water electrolysis membranes
J. Choi, H. Kim, S. Jeon, J. Seo, Y. Park, H. Park, A. Lee, C. Lee, M. Kim, H. Cho*, and J. Lee*
Small 19, 2300825 (2023).
58
ZIF-67 metal-organic frameworks synthesized onto CNT supports for oxygen evolution reaction in alkaline water electrolysis
H. Jung, Y. Kim, J. Lim, M. Seo, I. Kim, M. Kim, C. Lee, Y. Lee, C. Yoo, H. Cho*, and Y. Cho*
Electrochim. Acta 439, 141593 (2023).
57
Investigation of the operation characteristics and optimization of an alkaline water electrolysis system at high temperature and a high current density
D. Jang, H. Cho, S. Lee, M. Park, S. Kim, H. Park, and S. Kang*
J. Clean. Prod. 424, 138862 (2023).
56
Techno-economic evaluation of green hydrogen production with low-temperature water electrolysis technologies directly coupled with renewable power sources
D. Jang, H. Shin, H. Shin, H. Cho, and S. Kang*
Energy Convers. Manag. 286, 117083 (2023).
55
Insights into enhanced activity and durability of hierarchical Fe-doped Ni(OH)2/Ni catalysts for alkaline oxygen evolution reaction: In situ XANES studies
S. Lee, H. Oh, M. Kim, H. Cho, and Y. Lee*
Appl. Catal. B-Environ. 324, 122269 (2023).
54
Colossal dielectric perovskites of calcium copper titanate (CaCu3Ti4O12) with low iridium dopants enables ultrahigh mass activity for the acidic oxygen evolution reaction Cover
N. Taho, K. Kim, J. Ryu, B. An, A. Nayak, J. Jang, K. Na, W. Cho, G. Ali, J. Chae, M. Akbar, K. Chung, H. Cho, J. Park, B. Kim, and H. Han*
Adv. Sci. 10.1002/advs.202207695 (2023).
53
Hierarchically porous Ni foam-supported Co and Sn doped Ni3S2 nanosheets for oxygen evolution reaction electrocatalysts
W. An, H. Lee, S. Choi, S. Choi, H. Cho, M. Choi, and J. Park*
J. Mater. Chem. A 11, 5734 (2023).
52
A study on the effect of TiO2 nanoparticle size on the performance of composite separators in alkaline water electrolysis
M. F. Ali, H. Cho, J. Albers, Y. Choi, M. Kim, J. Lee, C. Lee, S. Lee, and W. Cho*
J. Mem. Sci. 10.1016/j.memsci.2023.121671 (2023).
51
The effect of iridium content in boron carbide-supported iridium catalyst on the activity and stability of proton exchange membrane water electrolyzer
J. Islam, S. Kim*, M. Rahman, P. Thien, M. Kim, H. Cho, C. Lee, J. Lee, and S. Lee
Mater. Today Energy 32, 101237 (2023).
50
Hydrogen evolution reaction activities of electrodeposited nanocrystalline Ni-Mo thin films in alkaline baths
D. To, S. Park, M. Kim, H. Cho, and N. V. Myung*
Int. J. Hydrog. Energy 48(23), 8409 (2023).
2022 10 papers+
49
Outlook of industrial-scale green H2 production via a hybrid system of alkaline water electrolysis and energy storage system based on seasonal solar radiation
H. Lee, B. Choe, B. Lee, J. Gu, H. Cho*, W. Won*, and H. Lim*
J. Clean. Prod. 377, 134210 (2022).
48
Influence of IrO2/TiO2 coated titanium porous transport layer on the performance of PEM water electrolysis
T. Doan, H. Lee, M. Kim, W. Cho, H. Cho*, and T. Kim*
J. Power Sources 533, 231370 (2022).
47
Iterative redox activation promotes interfacial synergy in an Ag/CuxO catalyst for oxygen reduction
Y. Park, K. Shin, C. Lee, S. Lee, Y. Lee, C. Kim, H. Cho*, G. Henkelman*, and H. Lee*
Chem. Eng. J. 15, 2858 (2021).
46
Structure-controlled graphene electrocatalysts for high-performance H2O2 production Cover
K. Lee, J. Lim, M. Lee, K. Ryu, H. Lee, J. Kim, H. Ju, H. Cho, B. Kim, M. Hatzell, J. Kang, and S. Lee
Energy Environ. Sci. 15, 2858 (2021).
45
A cathodic protection system against a reverse-current after shut-down in zero-gap alkaline water electrolysis Cover
Y. Kim, S. Jung, K. Kim, H. Kim, J. Kwon, J. Lee, H. Cho, and Y. Kim*
JACS Au 2, 2491 (2022).
44
Effect of solution pH, precursor ratio, agitation and temperature on Ni-Mo and Ni-Mo-O electrodeposits from ammonium citrate baths
D. To, S. Park, M. Kim, H. Cho, and N. V. Myung*
Front. Chem. 10, 1010325 (2022).
43
Effects of NH4+/citrate Complexing Agent Ratio on Ni-Mo and Ni-Mo-O Electrodeposits from Ammonium Citrate Baths
D. To, S. Park, M. Kim, H. Cho, and N. V. Myung*
Front. Chem. 10, 942423 (2022).
42
Synthesis of hierarchically porous Ni foam-supported heazlewoodite Ni3S2 nanorod electrocatalysts for highly efficient oxygen evolution reaction
D. Kim, H. Lee, S. Choi, S. Choi, W. An, H. Cho, M. Choi, and J. Park*
J. Alloys and Compd. 914, 165305 (2022).
41
Role of surface steps in activation of surface oxygen sites on Ir nanocrystals for oxygen evolution reaction in acidic media
M. Kim, J. Park, M. Wang, Q. Wang, M. Kim, J. Kim, H. Cho, C. Kim, Z. Feng, B. Kim, and S. Lee*
Appl. Catal. B-Environ. 302, 120834 (2022).
40
Cellulose nanocrystals-blended zirconia/polysulfone composite separator for alkaline electrolyzer at low electrolyte contents
J. Lee, J. Lee, C. Lee, H. Cho, M. Kim, S. Kim, J. Joo, W. Cho*, and C. Kim
Chem. Eng. J. 428, 131149 (2022).
2021 14 papers+
39
Sacrificial Species Approach to Designing Robust Transition Metal Phosphide Cathodes for Alkaline Water Electrolysis in Discontinuous Operation Cover
I. Kim, H. Cho*, M. Kim, H. Oh, S. Lee, Y. Lee, W. Cho, S. Kim, J. Joo, and C. Kim*
J. Mater. Chem. A 9, 16713 (2021).
38
Integrative techno-economic and environmental assessment for green H2 production by alkaline water electrolysis based on experimental data
B. Lee, H. Cho*, H. Kim, D. Lim, W. Cho, C. Kim, and H. Lim*
J. Environ. Chem. Eng. 9, 106349 (2021). (*Equally contributed).
37
Investigating influence of geometry and operating conditions on local current, concentration, and crossover in alkaline water electrolysis using computational fluid dynamics
J. Lopata, S. Kang, H. Cho*, C-H. Kim, J. W. Weidner, and S. Shimpalee
Electrochim. Acta 390, 138802 (2021).
36
A review of the porous transport layer in polymer electrolyte membrane water electrolysis
D. T. Linh, S. H. Shah, S. Kim, C. Kim, H. Cho*, and T. Kim*
Int. J. Energy Research 1-14 (2021).
35
Directly Sputtered Nickel Electrodes for Alkaline Water Electrolysis
W. Han, I. Kim, M. Kim, W. Cho, S. Kim, J. Joo, Y. Lee, Y. Cho, H. Cho*, and C. Kim*
Electrochim. Acta 386, 138458 (2021).
34
Understanding synergistic metal-oxide interactions of in situ exsolved metal nanoparticles on pyrochlore oxide support for enhanced electrocatalytic water splitting
M. Kim, J. Park, H. Ju, J. Kim, H. Cho, C. Kim, B. Kim*, and S. Lee*
Energy Environ. Sci. 14, 3053 (2021).
33
Resolving structure-dependent degradation of electrodeposited Ni(OH)2 catalysts in alkaline oxygen evolution reaction (OER): In situ XANES studies
S. Lee, I. Kim, H. Cho, C. Kim, and Y. Lee*
Appl. Catal. B-Environ. 284, 119729 (2021).
32
Numerical modeling and analysis of the effect of pressure on the performance of an alkaline water electrolysis system
D. Jang, H. Cho, and S. Kang*
Appl. Energ. 287, 116554 (2021).
31
Multiple perovskite layered lanthanum nickelate Ruddlesden-Popper systems as highly active bifunctional oxygen catalysts
S. Choi, J. Lee, H. Park, S. Lee, D. Kim, W. An, J. Kim, J. Kim, H. Cho, and J. Park*
Chem. Eng. J. 409, 128226 (2021).
30
Enhancing the activity and durability of iridium electrocatalyst supported on boron carbide by tuning the chemical state of iridium for oxygen evolution reaction
J. Islam, P. Thien, M. Kim, H. Cho, W. Cho, C. Kim, C. Lee, J. Lee, and S. Kim*
J. Power Sources 512, 230506 (2021).
29
Impact of voltage degradation in water electrolyzers on sustainability of synthetic natural gas production: Energy, economic, and environmental analysis
D. Lim, B. Lee, H. Lee, M. Byun, H. Cho, W. Cho, C. Kim, B. Brigljevic, and H. Lim*
Energy Convers. Manag. 245, 114516 (2021).
28
Structural effectiveness of AgCl-decorated Ag Nanowires enhancing oxygen reduction
S. Choi, Y. Park, J. Choi, C. Lee, H. Cho, C. Kim, J. Koo, and H. Lee*
ACS Sustain. Chem. Eng. 9(22), 7519 (2021).
27
Resolving anodic current and temperature distributions in a polymer electrolyte membrane water electrolysis cell using a pseudo-two-phase computational fluid dynamics model
J. Lopata, Z. Kang, J. Young, G. Bender, J. W. Weidner, H. Cho, and S. Shimpalee*
J. Electrochem. Soc. 168, 054518 (2021).
26
A feasibility study of photovoltaic-electrolysis-PEM hybrid system integrated into the electric grid system over the Korean peninsula
C. Kim, H. Cho, C. Kim, W. Cho, and H. Kim*
Front. Chem. 9, 732582 (2021).
2020 10 papers+
25
Cerium oxide-polysulfone composite separator for an advanced alkaline electrolyser
J. Lee, S. Kim, H. Cho, M. Kim, W. Cho*, J. Joo, and C. Kim
Polymers 12, 2821 (2020).
24
Preparation of boron carbide supported iridium nanoclusters by NaBH4 reduction method for improvement in oxygen evolution reaction activity of iridium catalyst
I. Jahowa, H. Cho, M. Kim, W. Cho, C. Kim, and S. Kim*
Electrochem. Comm. 121, 106877 (2020).
23
Advanced Zirfon-type porous separator for a high-rate alkaline electrolyser operating in a dynamic mode
H. Lee, M. Mehdi, S. Kim, H. Cho, M. Kim, W. Cho*, Y. Rhee, and C. Kim
J. Mem. Sci. 616, 118541 (2020).
22
Single-crystalline CoFe nanoparticles encapsulated in N-doped carbon nanotubes as a bifunctional catalyst for water splitting
X. Zeng, M. Jang, S. Choi, H. Cho, C. Kim, N. V. Myung*, and Y. Yin*
Mater. Chem. Front. 4, 2307 (2020).
21
Comparative analysis of circular and square end plates for a highly pressurized proton exchange membrane water electrolysis stack
M. Jo, H. Cho, and Y. Na*
Applied Sciences 10, 6315 (2020).
20
Renewable methanol synthesis from renewable H2 and CO2: How can power-to-liquid technology be economically feasible?
B. Lee, H. Lee, D. Lim, B. Brigljevic, W. Cho, H. Cho, C. Kim, and H. Lim*
Appl. Energ. 279, 115827 (2020).
19
3D architecture double perovskite NdBa0.5Sr0.5Co1.5Fe0.5O5+d embedded hollow net Co3O4 bifunctional electrocatalysts coupled with N-doped CNT and reduced graphene oxide for oxygen electrode reactions
S. Choi, I. So, S. Lee, J. Yoo, Y. Seo, H. Cho, and J. Park*
J. Alloys and Compd. 823, 153782 (2020).
18
Plasmon-Enhanced Oxygen Evolution Catalyzed by Fe2N-Embedded TiOxNy Nanoshells
X. Zeng, S. Choi, Y. Bai, M. Jang, R. Yu, H. Cho, C. Kim, N. Myung*, and Y. Yin*
ACS Appl. Energy Mater. 3(1), 146 (2020).
17
Redox reactivity of titania doped YSZ promoted iron-based oxygen carrier over multiple redox cycles for chemical looping reforming of methane and hydrogen production
W. Cho*, J. Lee, G. Nam, C. Kim, H. Cho, and J. Joo
Int. J. Energy Research 44, 4919 (2020).
16
The synthesis of a Zirfon-type porous separator with reduced gas crossover for alkaline electrolyzer
H. Lee, D. Dung, J. Kim, J. Park, S. Kim, H. Cho, W. Cho*, and C. Kim
Int. J. Energy Research 44, 1875 (2020).
2019 and earlier 15 papers+
15
Operational durability of three-dimensional Ni-Fe layered double hydroxide electrocatalyst for water oxidation
S. Lee, H. Cho*, W. Cho, S. Kim, Y. Cho, and C. Kim*
Electrochim. Acta 315, 94 (2019). (*Equally contributed).
14
Quantification of economic uncertainty for synthetic natural gas production in a H2O permeable membrane reactor as simultaneous power-to-gas and CO2 utilization technologies
B. Lee, H. Lee, H. Cho, W. Cho, C. Kim, and H. Lim*
Energy 182(1), 1058 (2019).
13
Projected economic outlook and scenario analysis for H2 production by alkaline water electrolysis on the basis of a unit electricity price, a learning rate, and an automation level
B. Lee, H. Lee, H. Cho, W. Cho, C. Kim, and H. Lim*
Sustainable Energy and Fuels 3, 1799 (2019).
12
Degradation analysis of mixed ionic-electronic conductor-supported iron-oxide oxygen carriers for chemical-looping conversion of methane
J. Lee, G. Nam, C. Kim, H. Cho, W. Cho*, and J. Joo
Appl. Energy 239, 644 (2019).
11
A scaling method for correlating ex situ and in situ measurements in PEM Fuel Cells and Electrolyzer
H. Cho*, W. Cho, J. W. Van Zee, and C. Kim*
J. Electrochem. Soc. 165, F883 (2018).
10
Feasibility study of the use of by-product iron oxide and industrial off-gas for application to chemical looping hydrogen production
W. Cho*, D. Lee, C. Kim, H. Cho, and S. Kim
Appl. Energy 216, 466 (2018).
9
Insight into the interactions between pyrene and polystyrene for efficient quenching nitroaromatic explosives
H. Jang, H. Cho, D. Uhrig, and M. Nieh
J. Mater. Chem. C 5, 12466 (2017).
8
Copolymerization of transition metal salen complexes and conversion into metal nanoparticles supported on hierarchically porous carbon monoliths: a one spot synthesis
T. V. Kotbagi, K. H. Shaughnessy, C. LeDoux, H. Cho, S. Tay-Agbozo, J. W. Van Zee, and M. G. Bakker*
J. Sol-Gel Sci. Technol. 84, 258 (2017).
7
Dimensionless analysis for predicting nickel alloys corrosion in molten salt systems for concentrating solar power systems
H. Cho*, J. W. Van Zee, S. Shimpalee, B. T. Mehrabadi, J. W. Weidner, B. Garcia-Diaz, M. Martinez-Rodriguez, L. Olson, and J. Gray
Corrosion 72, 742 (2016).
6
The contamination behavior of system derived organic model compounds on PEMFC: functional groups and mechanisms
H. Cho*, M. Das, Md. Opu, M. Ohashi, and J. W. Van Zee
J. Electrochem. Soc. 162, F1056 (2015).
5
The contamination mechanism and behavior of amide bond containing organic contaminant on PEMFC
H. Cho*, M. Das, H. Wang, H. Dinh, and J. W. Van Zee
J. Electrochem. Soc. 162, F427 (2015).
4
An experimental approach to investigate the transport of ammonia as a fuel contaminant in proton exchange membrane fuel cells
R. Jung, H. Cho, S. Park, and J. W. Van Zee
J. Power Sources 275, 14 (2015).
3
An isothermal model for predicting performance loss in PEMFCs from balance of plant leachate
H. Cho* and J. W. Van Zee*
J. Electrochem. Soc. 161, F1375 (2014).
2
Understanding of the absorption behavior of vanadium into Nafion
H. Cho*, M. Ohashi, and J. W. Van Zee*
J. Power Sources 267, 547 (2014).
1
Characterization of Nafion/Zirconium sulphophenyl phosphate nanocomposite membrane for direct methanol fuel cell
Y. Kim, H. Cho, M. Song, L. Ghil, J. Kang, and H. Rhee*
J. Nanosci. Nanotechno. 8, 4640 (2008).