Da Hye Won
Electrochemical Fragmentation of Cu2O Nanoparticles Enhancing Selective C–C Coupling from CO2 Reduction Reaction
H Jung, SY Lee, CW Lee, MK Cho, DH Won, C Kim, HS Oh, BK Min, ...
Journal of the American chemical society 141 (11), 4624-4633, 2019
Highly Efficient, Selective, and Stable CO2 Electroreduction on a Hexagonal Zn Catalyst
DH Won, H Shin, J Koh, J Chung, HS Lee, H Kim, SI Woo
Angewandte Chemie International Edition 55, 9297-9300, 2016
Facile CO2 electro-reduction to formate via oxygen bidentate intermediate stabilized by high-index planes of Bi dendrite catalyst
JH Koh+, DH Won+, T Eom+, NK Kim, KD Jung, H Kim, YJ Hwang, BK Min
ACS Catalysis 7, 5071-5077, 2017
Rational design of a hierarchical tin dendrite electrode for efficient electrochemical reduction of CO2
DH Won+, CH Choi+, J Chung, MW Chung, EH Kim, SI Woo
ChemSusChem 8 (18), 3092-3098, 2015
Sulfur Doped g-C3N4/BiVO4 Composite Photocatalyst for Water Oxidation under Visible Light
HJ Kong, DH Won, J Kim, SI Woo
Chemistry of Materials 28 (5), 1318-1324, 2016
Progress in development of electrocatalyst for CO2 conversion to selective CO production
DLT Nguyen, Y Kim, YJ Hwang, DH Won
Carbon Energy 1, 72-98, 2020
Selective CO2 Reduction on Zinc Electrocatalyst: The Effect of Zinc Oxidation State Induced by Pretreatment Environment
DLT Nguyen, MS Jee, DH Won, H Jung, HS Oh, BK Min, YJ Hwang
ACS Sustainable Chemistry & Engineering 5 (12), 11377-11386, 2017
Identification of Single-Atom Ni Site Active toward Electrochemical CO2 Conversion to CO
H Kim+, D Shin+, W Yang+, DH Won+, HS Oh, MW Chung, D Jeong, ...
Journal of the American Chemical Society 143 (2), 925-933, 2021
CO2 Electroreduction to Formate at a Partial Current Density of 930 mA cm–2 with InP Colloidal Quantum Dot Derived Catalysts
I Grigioni, LK Sagar, YC Li, G Lee, Y Yan, K Bertens, RK Miao, X Wang, ...
ACS Energy Letters 6 (1), 79-84, 2020
Photoelectrochemical production of formic acid and methanol from carbon dioxide on metal-decorated CuO/Cu2O-layered thin films under visible light irradiation
DH Won+, CH Choi+, J Chung, SI Woo
Applied catalysis. B, Environmental 158, 217-223, 2014
Electrocatalytic Reduction of Low Concentrations of CO2 Gas in a Membrane Electrode Assembly Electrolyzer
D Kim, W Choi, HW Lee, SY Lee, Y Choi, DK Lee, W Kim, J Na, U Lee, ...
ACS Energy Letters 6 (10), 3488-3495, 2021
Carbon monoxide as a promoter of atomically dispersed platinum catalyst in electrochemical hydrogen evolution reaction
HC Kwon, M Kim, JP Grote, SJ Cho, MW Chung, H Kim, DH Won, ...
Journal of the American Chemical Society 140 (47), 16198-16205, 2018
Metal–oxide interfaces for selective electrochemical C–C coupling reactions
CW Lee, SJ Shin, H Jung, DLT Nguyen, SY Lee, WH Lee, DH Won, ...
ACS Energy Letters 4 (9), 2241-2248, 2019
A Unifying Mechanism for Cation Effect Modulating C1 and C2 Productions from CO2 Electroreduction
SJ Shin, H Choi, S Ringe, DH Won, HS Oh, DH Kim, T Lee, DH Nam, ...
Nature Communications, 5484, 2022
Photoelectrochemical production of useful fuels from carbon dioxide on a polypyrrole-coated p-ZnTe photocathode under visible light irradiation
DH Won, J Chung, SH Park, EH Kim, SI Woo
Journal of Materials Chemistry A 3 (3), 1089-1095, 2015
Catalyst design strategies for stable electrochemical CO2 reduction reaction
W Choi, DH Won, YJ Hwang
Journal of Materials Chemistry A 8, 15341-15357, 2020
Effect of halides on nanoporous Zn-based catalysts for highly efficient electroreduction of CO 2 to CO
DLT Nguyen, MS Jee, DH Won, HS Oh, BK Min, YJ Hwang
Catalysis Communications 114, 109-113, 2018
Mass Transport Control by Surface Graphene Oxide for Selective CO Production from Electrochemical CO2 Reduction
DLT Nguyen, CW Lee, J Na, MC Kim, NDK Tu, SY Lee, YJ Sa, DH Won, ...
ACS Catalysis 10 (5), 3222-3231, 2020
Hierarchical Cu pillar electrodes for electrochemical CO 2 reduction to formic acid with low overpotential
J Chung, DH Won, J Koh, EH Kim, SI Woo
Physical Chemistry Chemical Physics 18 (8), 6252-6258, 2016
Toward economical application of carbon capture and utilization technology with near-zero carbon emission
KMG Langie, K Tak, C Kim, HW Lee, K Park, D Kim, W Jung, CW Lee, ...
Nature Communications 13 (1), 7482, 2022
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