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Byungchan Han

Yonsei University · Energy

About the Lab

Professor Byungchan Han's research lab specializes in the design and development of advanced functional materials for sustainable energy applications, with a strong focus on electrocatalysts for renewable energy conversion and storage. The lab explores novel materials such as defective metal oxides, layered double hydroxides, perovskites, and doped copper catalysts to enhance catalytic activity and stability in reactions like the oxygen evolution reaction (OER), hydrogen evolution reaction (HER), and electrochemical CO2 reduction. Using a combination of advanced characterization techniques and first-principles theoretical calculations—including DFT and operando spectroscopy—the lab uncovers atomic-level mechanisms governing surface reactivity and catalytic performance. Their work aims to bridge the gap between material synthesis and practical energy technologies by engineering defects, interfaces, and electronic structures at the nanoscale.

electrocatalysisdefect engineeringCO2 reductionperovskite oxidesfirst-principles calculations

Research Overview

Papers
200
Total Citations
6,140
Papers (5y)
65
Primary Field
Energy

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
65total
2022
2023
2024
2025
2026
Citations per year (5y)
954total
20222023202420252026

Selected Papers

15
1
Article|342 citations·2016
Oxygen-Deficient Zirconia (ZrO2−x): A New Material for Solar Light Absorption
Apurba Sinhamahapatra, Jong‐Pil Jeon, Joonhee Kang, Byungchan Han, Jong‐Sung Yu
SJR Q1Scientific ReportsOA

Here, we present oxygen-deficient black ZrO2-x as a new material for sunlight absorption with a low band gap around ~1.5 eV, via a controlled magnesiothermic reduction in 5% H2/Ar from white ZrO2, a wide bandgap(~5 eV) semiconductor, usually not considered for solar light absorption. It shows for the first time a dramatic increase in solar light absorbance and significant activity for solar light-induced H2 production from methanol-water with excellent stability up to 30 days while white ZrO2 fa

Renewable Energy, Sustainability and the EnvironmentEnergy
2
Article|292 citations·2021
Interfacing or Doping? Role of Ce in Highly Promoted Water Oxidation of NiFe‐Layered Double Hydroxide
Mengjie Liu, Kyung‐Ah Min, Byungchan Han, Lawrence Yoon Suk Lee
SJR Q1Advanced Energy Materials

Abstract Surface engineering of transition metal layered double hydroxides (LDHs) provides an efficient way of enhancing their catalytic activity toward the oxygen evolution reaction (OER). However, the underlying mechanism of atomistic doping or heterogeneous interface with foreign atom is still ambiguous. Herein, a case study of NiFe‐LDHs that are homogeneously doped with Ce (CeNiFe‐LDH) and interfaced with Ce(OH) 3 (Ce@NiFe‐LDH), which elucidates their electronic modulation, in situ evolution

Renewable Energy, Sustainability and the EnvironmentEnergy
3
Article|239 citations·2016
A New Family of Perovskite Catalysts for Oxygen-Evolution Reaction in Alkaline Media: BaNiO3and BaNi0.83O2.5
Jin Goo Lee, Jeemin Hwang, Sung‐Ho Hwang, Ok Sung Jeon, Jeongseok Jang, Ohchan Kwon, Yeayeon Lee, Byungchan Han, Yong‐Gun Shul
SJR Q1Journal of the American Chemical Society

Establishment of a sustainable energy society has been strong driving force to develop cost-effective and highly active catalysts for energy conversion and storage devices such as metal-air batteries and electrochemical water splitting systems. This is because the oxygen evolution reaction (OER), a vital reaction for the operation, is substantially sluggish even with precious metals-based catalysts. Here, we show for the first time that a hexagonal perovskite, BaNiO3, can be a highly functional

Renewable Energy, Sustainability and the EnvironmentEnergy
4
Article|216 citations·2004
Electrochemical modeling of intercalation processes with phase field models
Byungchan Han, Anton Van der Ven, Dane Morgan, Gerbrand Ceder
SJR Q1Electrochimica Acta
Electrical and Electronic EngineeringEngineering
5
Article|185 citations·2008
Effect of particle size and surface structure on adsorption of O and OH on platinum nanoparticles: A first-principles study
Byungchan Han, Caetano R. Miranda, Gerbrand Ceder
SJR Q1Physical Review B

Using first-principles density functional theory, we study the effect of particle size and surface structure on the chemisorption energy of OH and O on nanoparticles of Pt. We find that the chemisorption energies of O and OH are strongly affected by the size and structure of the Pt particle varying by up to $1.0\phantom{\rule{0.3em}{0ex}}\mathrm{eV}$ at different adsorption sites and particle sizes.

Renewable Energy, Sustainability and the EnvironmentEnergy
6
Article|179 citations·2005
Surface segregation and ordering of alloy surfaces in the presence of adsorbates
Byungchan Han, Anton Van der Ven, Gerbrand Ceder, Bing−Joe Hwang
SJR Q1Physical Review B

We argue that surface segregation can be substantially modified by the presence of adsorbates and present a first-principles method that allows us to equilibrate segregation and adsorption simultaneously on surfaces with fixed topology. The method is based on a cluster expansion theory to write the state of the system in terms of adsorbate and surface layer occupation variables. This model can be parametrized with density functional theory calculations and equilibrated at finite temperature with

Atmospheric ScienceEarth and Planetary Sciences
7
Article|104 citations·2015
Integrated study of first principles calculations and experimental measurements for Li-ionic conductivity in Al-doped solid-state LiGe2(PO4)3 electrolyte
Joonhee Kang, Habin Chung, Chil‐Hoon Doh, Byoungwoo Kang, Byungchan Han
SJR Q1Journal of Power Sources
Electrical and Electronic EngineeringEngineering
8
Article|94 citations·2023
Increasing CO Binding Energy and Defects by Preserving Cu Oxidation State via O2-Plasma-Assisted N Doping on CuO Enables High C2+ Selectivity and Long-Term Stability in Electrochemical CO2 Reduction
Dong Gyu Park, Jae Won Choi, Hoje Chun, Hae Sung Jang, Heebin Lee, Won Ho Choi, Byeong Cheul Moon, Keon‐Han Kim, Min Gyu Kim, Kyung Min Choi, Byungchan Han, Jeung Ku Kang
SJR Q1ACS Catalysis

Cu is considered as the most promising catalyst for the electrochemical carbon dioxide reduction reaction (CO 2 RR) to produce C 2+ hydrocarbons, but achieving high C 2+ product selectivity and efficiency with long-term stability remains one of great challenges. Herein, we report a strategy to realize the CO 2 RR catalyst allowing high C 2+ product selectivity and stable catalytic properties by utilizing the benefits of oxygen-plasma-assisted nitrogen doping on CuO. It is exhibited that the defe

Renewable Energy, Sustainability and the EnvironmentEnergy
9
Article|93 citations·2016
Towards a comprehensive understanding of FeCo coated with N-doped carbon as a stable bi-functional catalyst in acidic media
Seung Hyo Noh, Min Ho Seo, Joonhee Kang, Takeyoshi Okajima, Byungchan Han, Takeo Ohsaka
SJR Q1NPG Asia MaterialsOA

The identification and development of efficient catalysts made of non-precious materials for oxygen reduction reaction (ORR) are essential for the successful operation of a wide range of energy devices. This study provides evidence that earth-abundant nanoparticles of transition metals encapsulated in a nitrogen-doped carbon shell (M@N–C, M=Fe, Co, Ni, Cu or Fe alloys) are promising catalysts in acidic solutions. By density functional theory calculations and experimental validations, we quantita

Renewable Energy, Sustainability and the EnvironmentEnergy
10
Article|91 citations·2012
The graphene-supported palladium and palladium–yttrium nanoparticles for the oxygen reduction and ethanol oxidation reactions: Experimental measurement and computational validation
Min Ho Seo, Sung Mook Choi, Joon Kyo Seo, Seung Hyo Noh, Won Bae Kim, Byungchan Han
SJR Q1Applied Catalysis B: Environmental
Renewable Energy, Sustainability and the EnvironmentEnergy
11
Article|86 citations·2018
Tuning the catalytic activity of heterogeneous two-dimensional transition metal dichalcogenides for hydrogen evolution
Seung Hyo Noh, Jeemin Hwang, Joonhee Kang, Min Ho Seo, Daehyeon Choi, Byungchan Han
SJR Q1Journal of Materials Chemistry A

This study establishes big data for the catalytic properties of two-dimensional metal-dichalcogenides (2D-TMDs) toward the hydrogen evolution reaction (HER). In addition to conventionally known active sites of edges, it proposes that terrace sites (or the basal plane) can be substantially activated for the HER.

Materials ChemistryMaterials Science
12
Article|82 citations·2015
Design of an active and durable catalyst for oxygen reduction reactions using encapsulated Cu with N-doped carbon shells (Cu@N-C) activated by CO2treatment
Seung Hyo Noh, Min Ho Seo, Ye Xiao, Yuki Makinose, Takeyoshi Okajima, Nobuhiro Matsushita, Byungchan Han, Takeo Ohsaka
SJR Q1Journal of Materials Chemistry A

Cu@N-C with the Cu particles encapsulated in N-doped carbon shells, which was activated by CO<sub>2</sub>treatment, is an excellent electrocatalyst for the oxygen reduction reaction.

Renewable Energy, Sustainability and the EnvironmentEnergy
13
Article|77 citations·2013
First principles computational study on the electrochemical stability of Pt–Co nanocatalysts
Seung Hyo Noh, Min Ho Seo, Joon Kyo Seo, Peter Fischer, Byungchan Han
SJR Q1Nanoscale

Using density functional theory (DFT) calculations, we identify the thermodynamically stable configurations of Pt-Co alloy nanoparticles of varying Co compositions and particle sizes. Our results indicate that the most thermodynamically stable structure is a shell-by-shell configuration where the Pt atom only shell and the Co only shell alternately stack and the outermost shell consists of a Pt skin layer. DFT calculations show that the structure has substantially higher dissolution potential of

Renewable Energy, Sustainability and the EnvironmentEnergy
14
Article|71 citations·2022
Tuning the Site-to-Site Interaction in Ru–M (M = Co, Fe, Ni) Diatomic Electrocatalysts to Climb up the Volcano Plot of Oxygen Electroreduction
Mengjie Liu, Hoje Chun, Tsung‐Cheng Yang, Sung Jun Hong, Chia‐Min Yang, Byungchan Han, Lawrence Yoon Suk Lee
SJR Q1ACS NanoOA

The modulating of the geometric and electronic structures of metal-N-C atomic catalysts for improving their performance in catalyzing oxygen reduction reactions (ORRs) is highly desirable yet challenging. We herein report a delicate "encapsulation-substitution" strategy for the synthesis of paired metal sites in N-doped carbon. With the regulation of the <i>d</i>-orbital energy level, a significant increment in oxygen electroreduction activity was demonstrated in Ru-Co diatomic catalyst (DAC) co

Renewable Energy, Sustainability and the EnvironmentEnergy
15
Article|71 citations·2016
First-Principles Design of Graphene-Based Active Catalysts for Oxygen Reduction and Evolution Reactions in the Aprotic Li–O2 Battery
Joonhee Kang, Jong‐Sung Yu, Byungchan Han
SJR Q1The Journal of Physical Chemistry Letters

Using first-principles density functional theory (DFT) calculations, we demonstrate that catalytic activities toward oxygen reduction and evolution reactions (ORR and OER) in a Li-O2 battery can be substantially improved with graphene-based materials. We accomplish the goal by calculating free energy diagrams for the redox reactions of oxygen to identify a rate-determining step controlling the overpotentials. We unveil that the catalytic performance is well described by the adsorption energies o

Electrical and Electronic EngineeringEngineering

Research Areas

Renewable Energy, Sustainability and the EnvironmentElectrical and Electronic EngineeringMaterials ChemistryAtmospheric ScienceFluid Flow and Transfer ProcessesInorganic Chemistry

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