top of page
image.png

PUBLICATIONS

80. Boosting Water Oxidation Kinetics of BiVO4 through a Metal-Organic Co-Catalyst Enriched with Phosphate Groups (Co, Fe-NTMP): Insights from LMCT Mechanism and DFT Study, Applied Catalysis B: Environment and Energy, 125163, 2025

79. Enhanced Selectivity for C2H4 Production from C2H6 on Partially Chlorinated IrO2(110) Surfaces, ACS Catalysis 15, 12498-12510

78. Role of electronic modulation of Ni-Pr bimetallic catalyst for low-temperature CO2 methanation, Applied Catalysis B: Environment and Energy, 125675

77. Analytical Solution of Optimal Filter Design for Internal Model Control for First and Second Order Dead-Time Processes, under review

76. Modulated electronic environment of Ru on CeO2 for superior NH3 decomposition catalysis, Separation and Purification Technology, 133723, 2025

75. Application of electric fields in the selective conversion of small alkane on IrO2 (1 1 0) surface: DFT and microkinetic simulation study, Journal of Catalysis, 116226, 2025

74. Interactive impacts of organic-inorganic modifiers on surface characteristics of CU+-doped activated carbon for stable CO-adsorptive from CO2, Separation and Publication Technology, 130065, 2025

73. Selective conversion of ethane to value added products on RhO2 (1 1 0): A DFT and microkinetic simulation study, Journal of Catalysis, 116146, 2025

72. Low-temperature catalytic CO2 methanation over nickel supported on praseodymium oxide, Journal of Environmental Chemical Engineering 13 (2), 116129, 2025

 

71. Enhanced alkali–metal ion storage performance of bimetallic selenide/N-doped carbon core–shell anodesChemical Engineering Journal 504, 158750, 2025

70. Surface Interactive Assembly of Ruthenium based Janus Bimetallic Nanoparticles with Active Dual-function Sites for Efficient Use in CO2 Utilization, advanced functional material, Advanced Functional Materials, 2418874, 2025

​​

69. CO oxidation on IrO2 (110) surfaces, Surface Science, 122619, 2024 

68. Methanol Oxidation on RuO2 (110): Insights from DFT and Microkinetic Modeling, Korean Journal of Chemical Engineering, 1-10, 2024

67. Enhanced alkali–metal ion storage performance of bimetallic selenide/N-doped carbon core–shell anodes, Chemical Engineering Journal, 158750, 2024

66. Intrinsic reactivity of stoichiometric IrO2 (110) surface toward oxidative coupling of methane, Computational and Theoretical Chemistry, 114922, 2024

 

65. Surface chlorination of IrO2 (1 1 0) by HCl, The journal of Chemical Physics, 161, 064704, 2024

64. Highly durable Pt electrocatalyst on a hybrid support for boosting the sustainability of polymer electrolyte membrane fuel cells, International Journal of Hydrogen Energy 74, 392-403, 2024

63. Synergistic effects of copper and oxygen vacancies in enhancing the efficacy of partially crystalline CuMnxOy catalyst for ozone decomposition, The Journal of Chemical Physics 160 (23), 2024

62. Exfoliated defects-rich g-C3N4 nanosheets heterointerface engineering with CuCo2O4 as promising bifunctional electrocatalysts for seawater splitting, Chemical Engineering Journal 487, 150576, 2024Chemical Engineering Journal 487, 150576, 2024

61. Solar Driven 15.7% Hydrogen Conversion by Harmony of Light Harvesting, Electron Transporting Bridge, and S‐Defection in a Self‐Assembled Microscale CuS/rGO/CP Photoanode, Energy & Environmental Materials 7 (3), e1263, 2024

60. Synergistic Desulfurization Performance of Industrial Waste Red Mud: A Comprehensive Experimental and Computational Study for COS Removal and CO (g) Production, Applied Surface Science, 649, 159132, 2024

59. Dry synthesis of alumina-supported cobalt catalyst for highly enhanced catalytic oxidation, Chemical Engineering Journal, 481, 148316, 2023

58. MOF-derived CeO 2 catalysts with Pr doping: engineering oxygen vacancies for improved CO 2 conversion to dimethyl carbonate, Journal of Materials Chemistry A 12 (46), 32281-32297, 2024

57. Ethane Adsorption and Oxidation on IrO2(110) Surfaces, The Journal of Physical Chemistry C, 128, 111-122, 2023

56. Direct NO decomposition over Rh-supported catalysts for exhaust emission control, Chemical Engineering Journal, 475, 146005, 2023

55. Linking Operando Spectroscopy with Microkinetic Modeling to Unravel the Catalytic Mechanism for CH4 Oxidation on IrO2(110), 13, 14598-14613, 2023

54. Fundamental understanding of C2H4 production from C2H6 oxidation on stochiometric IrO2 (110) surface, Applied Surface Science, 631, 157456, 2023

53. Steering the structure and reactivity of Ag/Al2O3 by the addition of multi-functional WOx for NOx reduction by ethanol, Applied Catalysis B: Environmental, 330, 122527, 2023

52. Self-assembled CoS/S-rGO dual-functional composite, and reliable hydrogen evolution performance in both acidic and alkaline media, 19, 100404, 2023

51. Enhanced redox performance of LaFeO3 perovskite through in-situ exsolution of iridium nanoparticles for chemical looping steam methane reforming, Chemical Engineering Journal, 468, 143662, 2023

50. Catalytic decomposition of NO using molten gallium: an experimental and computational study, Molecular Catalysis, 543, 113144, 2023

49. Unraveling the corrosion kinetics of gallium-aluminum for efficient hydrogen production form water aw zero CO2 emission, Interantaional Journal of Hydrogen Energy, 48, 13390-13403, 2023

48. Methane Pyrolysis and carbon formation mechanism in Molten Manganese Chloride Mixtures, Applied Energy, 2023

47. Enhanced desulfurization performance of copper aerogel-based absorbents, Korean Journal of Chemical Engineering 40 (4), 791-801, 2023

46. Design and selective photocatalytic activity of highly concentrated C, N, O co-doped Zn, S co-defective ZnS particles mediated by ethylenediamine derivatives, Nano Today, 49, 101785, 2023

45. Enhancement in oxygen transfer rate of CuMn2O4 oxygen carrier via selective dopants: Role of dopant effects on O migration for chemical looping combustion, Catalysis Today 411, 11388, 2023

44. In-situ exsolution of bimetallic CoFe nanoparticles on (La, Sr) FeO3 perovskite: Its effect on electrocatalytic oxidative coupling of methane, Applied Catalysis B: Environmental, 321, 122026, 2023

43. Computational screening-based development in VOC removal catalyst: Methyl ethyl ketone oxidation over Pt/TiO2, 452, 139466, 2023

42. Enhanced oxygen transfer rate of chemical looping combustion through lattice expansion on CuMn 2 O 4 oxygen carrier, Sustainable Energy & Fuels 7 (22), 5422-5432, 2023

41. Fundamental analysis for active phase of rutile-based IrO2 catalyst: Comparison study of CH4 oxidation on IrO2 (1 0 0) and IrO2 (1 1 0), Applied Surface Science, 605, 154827, 2022

40. 석유 코크스에 함유된 황 성분의 직접 탈황: 용매 추출 및 고온 열처리 비교, 에너지기후변화학회지 17 141-154, 2022

39. Impact of Pd: Pt ratio of Pd/Pt bimetallic catalyst on CH4 oxidation, Applied Catalysis B: Environmental, 316, 121623, 2022

38. Effective oxygen reduction reaction and suppression of CO poisoning on Pt3Ni1/N-rGO electrocatalyst, Applied Surface Science, 600, 154048, 2022

37. Potential of intrinsic reactivity toward value added products from methane oxidation on RhO2 (1 1 0) surface, Applied Surface Science, 596, 153499, 2022

36. High N2 selectivity of Pt-VW/TiO2 oxidation catalyst for simultaneous control of NH3 and CO emissions, Chemical Engineering Journal, 444, 136517, 2022

35. Activity of Ir(100) and IrO2(110) for the Catalytic Oxidation of Methane, The Journal of Physical Chemistry C, 126, 36, 15156, 2022

34. Sustainable Hydrogen Production from Water Splitting on a Co3O4@LaCoO3Core–Shell Redox Catalyst, ACS Applied Energy Materials, 5, 8437-8442 2022

33. Designing a smart heterojunction coupling of cobalt-iron layered double hydroxide on nickel selenide nanosheets for highly efficient overall water splitting kinetics, Applied Catalysis B: Environmental, 308, 121221, 2022

32. Flexible structural transformation and high oxygen-transfer capacity of mixed inverse spinel magnesium manganese oxides during methane chemical looping combustion, Fuel Processing Technology, 232, 107262, 2022

31. Catalytic Oxidation of Methane on IrO2(110) Films Investigated Using Ambient-Pressure X-ray Photoelectron Spectroscopy, ACS Catalysis 12, 2840-2853, 2022

30. 석유 코크스 가스화로부터 블루수소 생산을 위한 합성가스 탈황기술 검토, 에너지기후변화학회지, 16, 171-187, 2021

29. Enhanced Morphological Preservation and Redox Activity in Al-Incorporated NiFe2O4 for Chemical Looping Hydrogen Production, ACS Sustainable Chemistry & Engineering 9 (44), 14800-14810, 2021

28. Single layered hollow NiO–NiS catalyst with large specific surface area and highly efficient visible-light-driven carbon dioxide conversion, Chemosphere 280, 130759, 2021 

27. CO2 Hydrogenation on NixMg1− xAl2O4: A Comparative Study of MgAl2O4 and NiAl2O4, Catalysts 11 (9), 1026, 2021 

26. Enhancement of Desulfurization Capacity with Cu-Based Macro-Porous Sorbents for Hydrogen Production by Gasification of Petroleum Cokes, Applied Sciences 11 (17), 7775, 2021

25. Isothermal Reduction of IrO2 (110) Films by Methane Investigated Using In Situ X-ray Photoelectron Spectroscopy, ACS Catalysis 11, 5004-5016, 2021

24. Alkane Activation and Oxidation on Late-Transition-Metal Oxides: Challenges and Opportunities, ACS Catalysis 11, 4682-4703, 2021 

23. Predictive screening and validation on chemical looping oxygen carrier activation by tuning electronic structures via transition metal dopants, Chemical Engineering Journal 406, 126729, 2021

​​

22. Ensemble effects in Cu/Au ultrasmall nanoparticles control the branching point for C1 selectivity during CO 2 electroreduction, Chemical Science 12 (26), 9146-9152, 2021

21. High Resolution X-ray Photoelectron Spectroscopy of an IrO2 (110) Film on Ir (100), The Journal of Physical Chemistry Letters, 2020

 

 Before YNU 

​​

20. Kinetics of low-temperature methane activation on IrO2 (1 1 0): Role of local surface hydroxide species, Journal of Catalysis 383, 181-192, 2020

19. Molecular chemisorption of N2 on IrO2 (110), The Journal of Chemical Physics 152 (7), 074712, 2020

18. Adsorption and Oxidation of CH4 on Oxygen-Rich IrO2 (110), The Journal of Physical Chemistry C, 2019

17. The role of phase impurities and lattice defects on the electron dynamics and photochemistry of CuFeO2 solar photocathodes, Nano Research 12 (9), 2390-2399, 2019

16. Initial reduction of the PdO (101) surface: role of oxygen vacancy formation kinetics, The Journal of Physical Chemistry C 122 (45), 26007-26017, 2018 

15. Hydrogen oxidation on oxygen-rich IrO2 (110), Catalysis, Structure & Reactivity 4 (4), 1-13, 2018

14. Understanding the intrinsic surface reactivity of single and multilayer PdO (101) on Pd (100), ACS Catalysis, 8, 8553-8567, 2018 

13. Dissociative Chemisorption and Oxidation of H 2 on the Stoichiometric IrO 2 (110) Surface, Topics in Catalysis 61 (5-6), 397-411, 2018

12. Facile Dehydrogenation of Ethane on the IrO2 (110) Surface, Journal of the American Chemical Society 140 (7), 2665-2672, 2018

11. Multiscale Modeling of Oxidation and Reduction Chemistry on Transition Metal Oxides, The Ohio State University (graduate thesis), 2018

10. Adsorption and Oxidation of Propane and Cyclopropane on IrO 2 (110), Physical Chemistry Chemical Physics, 2018

9. Adsorption and Oxidation of Ethylene on the Stoichiometric and O-rich RuO2 (110) Surfaces, The Journal of Physical Chemistry C 121 (37), 20375-20386, 2017

8. Low-temperature activation of methane on the IrO2 (110) surface, Science 356 (6335), 299-303, 2017

7. Growth and termination of a rutile IrO2 (100) layer on Ir (111), Surface Science 652, 213-221, 2016

6. Adsorption and Oxidation of n-Butane on the Stoichiometric RuO2(110) Surface, The Journal of Physical Chemistry C 120 (18), 9863-9873, 2016

​5. Chemical potential and solid-solid equilibrium of near-spherical Lennard-Jones dumbbell crystal, Korean Journal of Chemical Engineering 33 (3), 1047-1058, 2016

4. Adsorption of alkanes on stoichiometric and oxygen-rich RuO 2 (110), Physical Chemistry Chemical Physics 18 (32), 22647-22660, 2016

3. Monte Carlo simulation of free energy for the solid-liquid equilibrium of methane, Korean Journal of Chemical Engineering 32 (5), 939-949, 2015

2. Monte Carlo simulations for the free energies of C60 and C70 fullerene crystals by acceptance ratio method and expanded ensemble method, The Journal of Chemical Physics 140 (8), 084110, 2014

 

1. Growth and Surface Chemistry of Rutile IrO2 (110), 2023

©2021 by MKDIR Lab. Proudly created with Wix.com

bottom of page