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Jeung Ku Kang

Korea Advanced Institute of Science and Technology · 材料科学

研究室紹介

Professor Jeung Ku Kang's research lab specializes in the design and development of advanced functional materials for sustainable energy conversion and storage. The lab focuses on metal-organic frameworks (MOFs), layered double hydroxides (LDHs), and transition metal oxides, with key research directions including photocatalytic CO2 reduction, electrochemical nitrate reduction to ammonia, and water oxidation under visible light. The team also develops novel computational methods to accurately predict reaction energetics, supporting the rational design of efficient catalytic materials. Their work emphasizes enhancing charge transfer, light absorption, and structural stability to improve catalytic performance.

photocatalysiselectrocatalysisenergy storagetransition metal oxidesfunctional materials

Research Overview

Papers
186
Total Citations
9,071
Papers (5y)
37
Primary Field
材料科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
37total
2021
2022
2023
2024
2025
Citations per year (5y)
666total
20212022202320242025

Selected Papers

15
1
Article|1,671 citations·2011
Nitrogen-Doped Graphene for High-Performance Ultracapacitors and the Importance of Nitrogen-Doped Sites at Basal Planes
Hyung Mo Jeong, Jung Woo Lee, Weon Ho Shin, Yoon Jeong Choi, Hyun Joon Shin, Jeung Ku Kang, Jang Wook Choi
SJR Q1Nano Letters

Although various carbon nanomaterials including activated carbon, carbon nanotubes, and graphene have been successfully demonstrated for high-performance ultracapacitors, their capacitances need to be improved further for wider and more challenging applications. Herein, using nitrogen-doped graphene produced by a simple plasma process, we developed ultracapacitors whose capacitances (∼280 F/g(electrode)) are about 4 times larger than those of pristine graphene based counterparts without sacrific

Electronic, Optical and Magnetic MaterialsMaterials Science
2
Article|788 citations·2014
Supercapacitors of Nanocrystalline Metal–Organic Frameworks
Kyung Min Choi, Hyung Mo Jeong, Jung Hyo Park, Yue‐Biao Zhang, Jeung Ku Kang, Omar M. Yaghi
SJR Q1ACS Nano

The high porosity of metal-organic frameworks (MOFs) has been used to achieve exceptional gas adsorptive properties but as yet remains largely unexplored for electrochemical energy storage devices. This study shows that MOFs made as nanocrystals (nMOFs) can be doped with graphene and successfully incorporated into devices to function as supercapacitors. A series of 23 different nMOFs with multiple organic functionalities and metal ions, differing pore sizes and shapes, discrete and infinite meta

Electronic, Optical and Magnetic MaterialsMaterials Science
3
Article|492 citations·2012
Nitrogen-Doped Multiwall Carbon Nanotubes for Lithium Storage with Extremely High Capacity
Weon Ho Shin, Hyung Mo Jeong, Byung Gon Kim, Jeung Ku Kang, Jang Wook Choi
SJR Q1Nano Letters

The increasing demands on high performance energy storage systems have raised a new class of devices, so-called lithium ion capacitors (LICs). As its name says, LIC is an intermediate system between lithium ion batteries and supercapacitors, designed for taking advantages of both types of energy storage systems. Herein, as a quest to improve the Li storage capability compared to that of other existing carbon nanomaterials, we have developed extrinsically defective multiwall carbon nanotubes by n

Electrical and Electronic EngineeringEngineering
4
Article|384 citations·2015
Photocatalytic CO2 reduction by a mixed metal (Zr/Ti), mixed ligand metal–organic framework under visible light irradiation
Yeob Lee, Sangjun Kim, Jeung Ku Kang, Seth M. Cohen
SJR Q1Chemical CommunicationsOA

Postsynthetic exchange (PSE) of Ti(IV) into a Zr(IV)-based MOF enabled photocatalytic CO2 reduction to HCOOH under visible light irradiation with the aid of BNAH and TEOA. Use of a mixed-ligand strategy enhanced the photocatalytic activity of the MOF by introducing new energy levels in the band structure of the MOF.

Inorganic ChemistryChemistry
5
Article|256 citations·2011
Heterogeneity within Order in Crystals of a Porous Metal–Organic Framework
Kyung Min Choi, Hyung Joon Jeon, Jeung Ku Kang, Omar M. Yaghi
SJR Q1Journal of the American Chemical Society

Generally, crystals of synthetic porous materials such as metal-organic frameworks (MOFs) are commonly made up from one kind of repeating pore structure which predominates the whole material. Surprisingly, little is known about how to introduce heterogeneously arranged pores within a crystal of homogeneous pores without losing the crystalline nature of the material. Here, we outline a strategy for producing crystals of MOF-5 in which a system of meso- and macropores either permeates the whole cr

Inorganic ChemistryChemistry
6
Article|196 citations·2023
Energy-efficient electrochemical ammonia production from dilute nitrate solution
Keon‐Han Kim, Heebin Lee, Xiaopeng Huang, Jong Hui Choi, Chunping Chen, Jeung Ku Kang, Dermot O’Hare
SJR Q1Energy & Environmental ScienceOA

Highly efficient electrochemical nitrate reduction could be key for sustainable ammonia production. Our NiFe LDH/Cu foam electrode exhibits an NH 3 selectivity of 95.8% with 98.5% nitrate conversion.

CatalysisChemical Engineering
7
Article|180 citations·2001
Prediction of transition state barriers and enthalpies of reaction by a new hybrid density-functional approximation
Jeung Ku Kang, Charles B. Musgrave
SJR Q1The Journal of Chemical Physics

We present a new hybrid density-functional method which predicts transition state barriers with the same accuracy as CBS-APNO, and transition state barriers and enthalpies of reaction with smaller errors than B3LYP, BHandHLYP, and G2. The accuracy of the new method is demonstrated on 132 energies, including 74 transition state barriers and 58 enthalpies of reaction. For 40 reactions with reliable experimental barriers, the absolute mean deviations of the transition state barriers are 0.9, 1.0, 3

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
8
Article|161 citations·2012
Extremely stable cycling of ultra-thin V2O5 nanowire–graphene electrodes for lithium rechargeable battery cathodes
Jung Woo Lee, Soo Yeon Lim, Hyung Mo Jeong, Tae Hoon Hwang, Jeung Ku Kang, Jang Wook Choi
SJR Q1Energy & Environmental Science

Vanadium pentoxide (V2O5) has received considerable attention as a lithium battery cathode because its specific capacity (>250 mA h g−1) is higher than those (<170 mA h g−1) of most commercial cathode materials. Despite this conspicuous advantage, V2O5 has suffered from limited cycle life, typically below a couple of hundred cycles due to the agglomeration of its particles. Once V2O5 particles are agglomerated, the insulating phases continuously expand to an extent that ionic and electronic cond

Electrical and Electronic EngineeringEngineering
9
Article|144 citations·2011
Titanium-embedded layered double hydroxides as highly efficient water oxidation photocatalysts under visible light
Yeob Lee, Jung Hoon Choi, Hyung Joon Jeon, Kyung Min Choi, Jung Woo Lee, Jeung Ku Kang
SJR Q1Energy & Environmental Science

Here, we have synthesized the new titanium-embedded layered double hydroxides (LDHs), such as (Ni/Ti)LDH and (Cu/Ti)LDH. First of all, the formation of LDH structures and the bonding nature for a mixed oxide structure of LDHs are explored in this work. Also, it is determined that our LDHs show two absorption bands in the red and blue regions under visible light, thus different from those of a pure titanium oxide with absorption bands in only the UV region. We find that the (Ni/Ti)LDH with the hi

Materials ChemistryMaterials Science
10
Article|136 citations·2002
The mechanism of HF/H2O chemical etching of SiO2
Jeung Ku Kang, Charles B. Musgrave
SJR Q1The Journal of Chemical Physics

Quantum chemistry is used to investigate the HF/H2O chemical etching mechanism of silicon dioxide. Etching proceeds through four sequential steps to remove silicon as SiF4(g) for silicon dioxide, eventually leading to a fluorine-terminated silicon surface which HF attacks, resulting in a hydrogen-passivated silicon surface. Our predicted activation barriers show that the concerted attack by HF and H2O enhances the etch rate over etching by HF alone by reducing the barrier for each etching step.

Electrical and Electronic EngineeringEngineering
11
Article|133 citations·2012
Highly porous gallium oxide with a high CO2 affinity for the photocatalytic conversion of carbon dioxide into methane
Hang‐Ah Park, Jung Hoon Choi, Kyung Min Choi, Dong Ki Lee, Jeung Ku Kang
Journal of Materials Chemistry

Highly porous gallium oxide was synthesized by reconstructing its surface and body with mesopores and macropores. For the first time, the efficient photocatalytic conversion of CO2 into a high energy carrier, CH4, using the porous gallium oxide was realized without any co-particle or sacrificial reagent. The enhanced photocatalytic activity is mainly attributed to the 300% higher CO2 adsorption capacity, as well as the 200% increased surface area, compared to the bulk nanoparticles. Furthermore,

Electronic, Optical and Magnetic MaterialsMaterials Science
12
Article|128 citations·2015
Photocatalytic CO2 reduction using visible light by metal-monocatecholato species in a metal–organic framework
Yeob Lee, Sangjun Kim, Honghan Fei, Jeung Ku Kang, Seth M. Cohen
SJR Q1Chemical CommunicationsOA

Metal-organic frameworks (MOFs) with isolated metal-monocatecholato groups have been synthesized via postsynthetic exchange (PSE) for CO2 reduction photocatalyst under visible light irradiation in the presence of 1-benzyl-1,4-dihydronicotinamide and triethanolamine. The Cr-monocatecholato species are more efficient than the Ga-monocatecholato species.

Inorganic ChemistryChemistry
13
Article|122 citations·2014
Nitrogen-doped open pore channeled graphene facilitating electrochemical performance of TiO2 nanoparticles as an anode material for sodium ion batteries
Hyun Ae, Hyung Mo Jeong, Jeung Ku Kang
SJR Q1Journal of Materials Chemistry A

We report electrochemical performance of a TiO<sub>2</sub> combined with a nitrogen-doped open channeled graphene anode composite for sodium ion batteries.

Electrical and Electronic EngineeringEngineering
14
Article|96 citations·2008
Tunability of electronic band gaps from semiconducting to metallic states via tailoring Zn ions in MOFs with Co ions
Jung Hoon Choi, Yoon Jeong Choi, Jung Woo Lee, Weon Ho Shin, Jeung Ku Kang
SJR Q2Physical Chemistry Chemical Physics

Metal-organic frameworks (MOFs) have recently received much attention as promising candidates for gas storage, chemical separation, and heterogeneous catalysis. However, the applicability of MOFs remains limited due to their relatively large band gaps. Here, on the basis of first-principles theory study, it is demonstrated that this problem could be overcome by tailoring Zn2+ ions in MOFs with Co2+ ions while maintaining the same organic linkers. Density of states and molecular orbitals for MOFs

Inorganic ChemistryChemistry
15
Article|95 citations·2014
Nickel oxide encapsulated nitrogen-rich carbon hollow spheres with multiporosity for high-performance pseudocapacitors having extremely robust cycle life
Se Yun Kim, Hyung Mo Jeong, Jun Ho Kwon, Il Woo Ock, Won Hyuck Suh, Galen D. Stucky, Jeung Ku Kang
SJR Q1Energy & Environmental Science

Nickel oxide-encapsulated hollow carbon nitride spheres with multiporosity show an ∼250% enhancement in capacitance, in addition to their robust cycle life.

Electronic, Optical and Magnetic MaterialsMaterials Science

Research Areas

Materials ChemistryElectrical and Electronic EngineeringRenewable Energy, Sustainability and the EnvironmentElectronic, Optical and Magnetic MaterialsInorganic ChemistryCatalysis

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