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Kim Jongsik

Kyung Hee University · Materials Science

About the Lab

Professor Kim Jongsik's research lab specializes in advanced materials chemistry and catalysis, with a strong focus on understanding surface and interfacial phenomena in metal oxides and phosphates using solid-state NMR and computational methods. The lab investigates environmentally relevant processes such as phosphate adsorption on iron oxyhydroxides and plasma-catalyzed C–H bond activation for sustainable energy applications. Key research directions include the design of functional nanomaterials for energy storage and environmental remediation, particularly in lithium-ion battery cathodes and oxidative desulfurization catalysts. The integration of experimental NMR techniques with periodic DFT calculations enables atomic-level insights into electronic structures and surface reactivity.

solid-state NMRcatalysisenergy storagenanomaterialssurface chemistry

Research Overview

Papers
265
Total Citations
5,036
Papers (5y)
45
Primary Field
Materials Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
45total
2021
2022
2023
2024
2025
Citations per year (5y)
480total
20212022202320242025

Selected Papers

15
1
Article|223 citations·2011
Phosphate adsorption on the iron oxyhydroxides goethite (α-FeOOH), akaganeite (β-FeOOH), and lepidocrocite (γ-FeOOH): a 31P NMR Study
Jong‐Sik Kim, Wei Li, Brian L. Philips, Clare P. Grey
SJR Q1Energy & Environmental Science

Phosphate adsorption on the surfaces of the iron oxyhydroxide polymorphs goethite, akaganeite, and lepidocrocite were studied by using 31P static spin-echo mapping NMR experiments to determine how this environmentally-important anion binds to common soil minerals. The large 31P hyperfine shifts confirm the formation of inner-sphere complexes between the phosphate anion and the iron oxyhydroxide surface, the large shifts indicating the presence of Fe3+–O–P covalent bonds. Binding was explored as

Renewable Energy, Sustainability and the EnvironmentEnergy
2
Article|141 citations·2010
Linking Local Environments and Hyperfine Shifts: A Combined Experimental and Theoretical31P and7Li Solid-State NMR Study of Paramagnetic Fe(III) Phosphates
Jong‐Sik Kim, Derek S. Middlemiss, Natasha A. Chernova, Ben Y. X. Zhu, Christian Masquelier, Clare P. Grey
SJR Q1Journal of the American Chemical Society

Iron phosphates (FePO(4)) are among the most promising candidate materials for advanced Li-ion battery cathodes. This work reports upon a combined nuclear magnetic resonance (NMR) experimental and periodic density functional theory (DFT) computational study of the environments and electronic structures occurring in a range of paramagnetic Fe(III) phosphates comprising FePO(4) (heterosite), monoclinic Li(3)Fe(2)(PO(4))(3) (anti-NASICON A type), rhombohedral Li(3)Fe(2)(PO(4))(3) (NASICON B type),

SpectroscopyChemistry
3
Article|128 citations·2017
Synergistic effects of plasma–catalyst interactions for CH4 activation
Jong‐Sik Kim, David B. Go, Jason C. Hicks
SJR Q2Physical Chemistry Chemical Physics

Plasma-assisted catalysis populates vibrationally excited CH<sub>4</sub> interacting with catalyst, leading to small energy barriers and enhanced rates to activate CH<sub>4</sub>.

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
4
Article|110 citations·2016
Enhancing C–H Bond Activation of Methane via Temperature-Controlled, Catalyst–Plasma Interactions
Jong‐Sik Kim, Marshall S. Abbott, David B. Go, Jason C. Hicks
SJR Q1ACS Energy Letters

Recent shale gas discoveries and advances in plasma chemistry provide the basis to exploit metal surface–plasma interactions to precisely control C–H bond activation on catalytic surfaces, leading to improved reaction efficiencies. Although the exact determination of plasma–catalyst interactions remains a topic of continuing research, this Letter provides evidence that plasma–catalyst interactions exist and can be used to significantly enhance the activation of C–H bonds at temperatures >630 K,

Materials ChemistryMaterials Science
5
Article|100 citations·2018
Fe3S4/Fe7S8-promoted degradation of phenol via heterogeneous, catalytic H2O2 scission mediated by S-modified surface Fe2+ species
Yun Jeong Choe, Ji Young Byun, Sang Hoon Kim, Jong‐Sik Kim
SJR Q1Applied Catalysis B: Environmental
Water Science and TechnologyEnvironmental Science
6
Article|75 citations·2008
Local Environments and Lithium Adsorption on the Iron Oxyhydroxides Lepidocrocite (γ-FeOOH) and Goethite (α-FeOOH): A 2H and 7Li Solid-State MAS NMR Study
Jong‐Sik Kim, Ulla Gro Nielsen, Clare P. Grey
SJR Q1Journal of the American Chemical Society

2H and 7Li MAS NMR spectroscopy techniques were applied to study the local surface and bulk environments of iron oxyhydroxide lepidocrocite (gamma-FeOOH). 2H variable-temperature (VT) MAS NMR experiments were performed, showing the presence of short-range, strong antiferromagnetic correlations, even at temperatures above the Néel temperature, T(N), 77 K. The formation of a Li+ inner-sphere complex on the surface of lepidocrocite was confirmed by the observation of a signal with a large 7Li hyper

Renewable Energy, Sustainability and the EnvironmentEnergy
7
Article|69 citations·2019
Enhancing the decomposition of refractory contaminants on SO42--functionalized iron oxide to accommodate surface SO4- generated via radical transfer from OH
Jong‐Sik Kim, Yun Jeong Choe, Sang Hoon Kim, Keunhong Jeong
SJR Q1Applied Catalysis B: Environmental
Water Science and TechnologyEnvironmental Science
8
Article|67 citations·2013
Carbothermal Reduction of Ti-Modified IRMOF-3: An Adaptable Synthetic Method to Support Catalytic Nanoparticles on Carbon
Jong‐Sik Kim, Nicholas D. McNamara, Theresa H. Her, Jason C. Hicks
SJR Q1ACS Applied Materials & Interfaces

This work describes a novel method for the preparation of titanium oxide nanoparticles supported on amorphous carbon with nanoporosity (Ti/NC) via the post-synthetic modification of a Zn-based MOF with an amine functionality, IRMOF-3, with titanium isopropoxide followed by its carbothermal pyrolysis. This material exhibited high purity, high surface area (>1000 m(2)/g), and a high dispersion of metal oxide nanoparticles while maintaining a small particle size (~4 nm). The material was shown to b

Inorganic ChemistryChemistry
9
Article|64 citations·2018
Exploration of surface properties of Sb-promoted copper vanadate catalysts for selective catalytic reduction of NOX by NH3
Jong‐Sik Kim, Dong Wook Kwon, Somin Lee, Heon Phil Ha
SJR Q1Applied Catalysis B: Environmental
Materials ChemistryMaterials Science
10
Article|64 citations·2005
The conventional nonsteroidal anti-inflammatory drug sulindac sulfide arrests ovarian cancer cell growth via the expression of NAG-1/MIC-1/GDF-15
Jong‐Sik Kim, Seung Joon Baek, Tina M. Sali, Thomas E. Eling
SJR Q1Molecular Cancer Therapeutics

Although the chemopreventive and antitumorigenic activities of nonsteroidal anti-inflammatory drug (NSAID) against colorectal cancer are well established, the molecular mechanisms responsible for these properties in ovarian cancer have not been elucidated. Therefore, there is an urgent need to develop mechanism-based approaches for the management of ovarian cancer. To this end, the effect of several NSAIDs on ovarian cancer cells was investigated as assessed by the induction of NAG-1/MIC-1/GDF-1

RheumatologyMedicine
11
Article|60 citations·2010
Association of a common AGO1 variant with lung cancer risk: A two‐stage case–control study
Jong‐Sik Kim, Yi Young Choi, Guang Jin, Hyo‐Gyoung Kang, Jin‐Eun Choi, Hyo‐Sung Jeon, Won-Kee Lee, Dong Sun Kim, Chang Ho Kim, Young J. Kim, Ji Woong Son, Tae Hoon Jung
SJR Q2Molecular CarcinogenesisOA

Based on the important role of microRNA (miRNA) biosynthesis genes in carcinogenesis, we hypothesized that polymorphisms in the miRNA biosynthesis genes may modulate susceptibility to lung cancer. To test this hypothesis, we conducted a two-stage study to evaluate the associations between single nucleotide polymorphisms (SNPs) in the miRNA biosynthesis genes and the risk of lung cancer. In stage 1 of the study, 24 SNPs in the 11 miRNA biosynthesis genes (DROSHA, DGCR8, RAN, XPO5, DICER, AGO1, AG

Cancer ResearchBiochemistry, Genetics and Molecular Biology
12
Article|45 citations·2018
Rational selection of Fe2V4O13 over FeVO4 as a preferred active site on Sb-promoted TiO2 for catalytic NOX reduction with NH3
Jong‐Sik Kim, Dong Ho Kim, Dong Wook Kwon, Heon Phil Ha
SJR Q2Catalysis Science & Technology

Fe<sub>2</sub>V<sub>4</sub>O<sub>13</sub> outperforms FeVO<sub>4</sub> as an active site for NH<sub>3</sub>-SCR and resists SO<sub>2</sub>/ABS/Na poisons with the inclusion of an Sb promoter.

Materials ChemistryMaterials Science
13
Article|42 citations·2002
Enhancement of the Adenoviral Sensitivity of Human Ovarian Cancer Cells by Transient Expression of Coxsackievirus and Adenovirus Receptor (CAR)
Jong‐Sik Kim, Seung‐Hoon Lee, Yong Suk Cho, Jung‐Joo Choi, Young Ho Kim, Je–Ho Lee
SJR Q1Gynecologic Oncology
GeneticsBiochemistry, Genetics and Molecular Biology
14
Article|39 citations·2010
2H and 7Li Solid-State MAS NMR Study of Local Environments and Lithium Adsorption on the Iron(III) Oxyhydroxide, Akaganeite (β-FeOOH)
Jong‐Sik Kim, Clare P. Grey
SJR Q1Chemistry of Materials

2 H and 7 Li MAS NMR spectroscopy have been applied to characterize the surface and bulk hydroxyl groups and Li + sorption on the iron oxyhydroxide akaganeite (β-FeOOH), a common soil mineral with a large surface area and uptake capacity for toxic cations and anions. The formation of both inner and outer-sphere complexes on the surface of akaganeite was confirmed, the former giving rise to 7 Li NMR signals with large 7 Li hyperfine shifts. The concentrations of these complexes was determined as

Renewable Energy, Sustainability and the EnvironmentEnergy
15
Article|37 citations·2016
Catalytic activity and stability of carbon supported V oxides and carbides synthesized via pyrolysis of MIL-47 (V)
Jong‐Sik Kim, Nicholas D. McNamara, Jason C. Hicks
SJR Q2Applied Catalysis A GeneralOA
CatalysisChemical Engineering

Research Areas

Materials ChemistryRheumatologyMolecular BiologyRenewable Energy, Sustainability and the EnvironmentWater Science and TechnologyInorganic Chemistry

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