Skip to main content

Noejung Park

Ulsan National Institute of Science and Technology · 材料科学

研究室紹介

Professor Noejung Park's research lab specializes in computational and theoretical materials science, focusing on the electronic, magnetic, and catalytic properties of two-dimensional and nanostructured materials. Key research directions include designing van der Waals heterostructures with tunable excitonic and spintronic behaviors through atomic-scale stacking control, developing carbon-based 3D frameworks for high-capacity hydrogen storage and transition metal dispersion, and engineering 2D/0D heterostructures for enhanced electrocatalysis. The lab employs advanced first-principles methods such as density functional theory and many-body perturbation theory to explore symmetry-breaking phenomena, topological states, and interfacial charge transfer in low-dimensional systems.

2D materialshydrogen storageheterostructuresexcitonselectrocatalysis

Research Overview

Papers
238
Total Citations
14,096
Papers (5y)
30
Primary Field
材料科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
30total
2022
2023
2024
2025
2026
Citations per year (5y)
324total
20222023202420252026

Selected Papers

15
1
Article|314 citations·2017
Probing Evolution of Twist-Angle-Dependent Interlayer Excitons in MoSe2/WSe2 van der Waals Heterostructures
Pramoda K. Nayak, Yevhen Horbatenko, Seongjoon Ahn, Gwangwoo Kim, Jae‐Ung Lee, Kyung Yeol, A‐Rang Jang, Hyunseob Lim, Dogyeong Kim, Sunmin Ryu, Hyeonsik Cheong, Noejung Park
SJR Q1ACS Nano

Interlayer excitons were observed at the heterojunctions in van der Waals heterostructures (vdW HSs). However, it is not known how the excitonic phenomena are affected by the stacking order. Here, we report twist-angle-dependent interlayer excitons in MoSe 2 /WSe 2 vdW HSs based on photoluminescence (PL) and vdW-corrected density functional theory calculations. The PL intensity of the interlayer excitons depends primarily on the twist angle: It is enhanced at coherently stacked angles of 0° and

Materials ChemistryMaterials Science
2
Article|226 citations·2003
Magnetism in All-Carbon Nanostructures with Negative Gaussian Curvature
Noejung Park, Mina Yoon, Savaş Berber, Jisoon Ihm, Eiji Ōsawa, David Tománek
SJR Q1Physical Review Letters

We apply the ab initio spin density functional theory to study magnetism in all-carbon nanostructures. We find that particular systems, which are related to schwarzite and contain no undercoordinated carbon atoms, carry a net magnetic moment in the ground state. We postulate that, in this and other nonalternant aromatic systems with negative Gaussian curvature, unpaired spins can be introduced by sterically protected carbon radicals.

Materials ChemistryMaterials Science
3
Article|162 citations·2007
Computational Study of Hydrogen Storage Characteristics of Covalent-Bonded Graphenes
Noejung Park, Suklyun Hong, Gyubong Kim, Seung-Hoon Jhi
SJR Q1Journal of the American Chemical Society

We performed first-principles calculations to investigate the hydrogen storage characteristics of carbon-based 3-D solid structures, called covalently bonded graphenes (CBGs). Using the density functional method and the Møller-Plesset perturbation method, we show that H2 molecular binding in the CBGs is stronger than that on an isolated graphene with an increase of 20 to approximately 150% in binding energy, which is very promising for storage at ambient conditions. We also suggest that the CBGs

Materials ChemistryMaterials Science
4
Article|161 citations·2018
Exploring Critical Factors Affecting Strain Distribution in 1D Silicon‐Based Nanostructures for Lithium‐Ion Battery Anodes
Yoonkook Son, Soojin Sim, Hyunsoo Ma, Min Choi, Yeonguk Son, Noejung Park, Jaephil Cho, Minjoon Park
SJR Q1Advanced Materials

Despite the advantage of high capacity, the practical use of the silicon anode is still hindered by large volume expansion during the severe pulverization lithiation process, which results in electrical contact loss and rapid capacity fading. Here, a combined electrochemical and computational study on the factor for accommodating volume expansion of silicon-based anodes is shown. 1D silicon-based nanostructures with different internal spaces to explore the effect of spatial ratio of voids and th

Electrical and Electronic EngineeringEngineering
5
Article|156 citations·2020
Covalent 0D–2D Heterostructuring of Co9S8–MoS2 for Enhanced Hydrogen Evolution in All pH Electrolytes
Minkyung Kim, Mohsin Ali Raza Anjum, Min Choi, Hu Young Jeong, Sun Hee Choi, Noejung Park, Jae Sung Lee
SJR Q1Advanced Functional Materials

Abstract Ultrasmall Co 9 S 8 nanoparticles are introduced on the basal plane of MoS 2 to fabricate a covalent 0D–2D heterostructure that enhances the hydrogen evolution reaction (HER) activity of electrochemical water splitting. In the heterostructure, separate phases of Co 9 S 8 and MoS 2 are formed, but they are connected by Co–S–Mo type covalent bonds. The charge redistribution from Co to Mo occurring at the interface enhances the electron‐doped characteristics of MoS 2 to generate electron‐r

Renewable Energy, Sustainability and the EnvironmentEnergy
6
Article|140 citations·2018
Phonon-driven spin-Floquet magneto-valleytronics in MoS2
Dongbin Shin, Hannes Hübener, Umberto De Giovannini, Hosub Jin, Ángel Rubio, Noejung Park
SJR Q1Nature CommunicationsOA

Abstract Two-dimensional materials equipped with strong spin–orbit coupling can display novel electronic, spintronic, and topological properties originating from the breaking of time or inversion symmetry. A lot of interest has focused on the valley degrees of freedom that can be used to encode binary information. By performing ab initio time-dependent density functional simulation on MoS 2 , here we show that the spin is not only locked to the valley momenta but strongly coupled to the optical

Materials ChemistryMaterials Science
7
Article|118 citations·2017
Macroporous Inverse Opal-like MoxC with Incorporated Mo Vacancies for Significantly Enhanced Hydrogen Evolution
Feng Li, Xianglong Zhao, Javeed Mahmood, Mahmut Sait Okyay, Sun‐Min Jung, Ishfaq Ahmad, Seok‐Jin Kim, Gao‐Feng Han, Noejung Park, Jong‐Beom Baek
SJR Q1ACS Nano

The hydrogen evolution reaction (HER) is one of the most important pathways for producing pure and clean hydrogen. Although platinum (Pt) is the most efficient HER electrocatalyst, its practical application is significantly hindered by high-cost and scarcity. In this work, an Mo x C with incorporated Mo vacancies and macroporous inverse opal-like (IOL) structure (Mo x C-IOL) was synthesized and studied as a low-cost efficient HER electrocatalyst. The macroporous IOL structure was controllably fa

Renewable Energy, Sustainability and the EnvironmentEnergy
8
Article|103 citations·2015
Antimony-doped graphene nanoplatelets
In‐Yup Jeon, Min Choi, Hyun‐Jung Choi, Sun‐Min Jung, Minjung Kim, Jeong‐Min Seo, Seo‐Yoon Bae, Seonyoung Yoo, Guntae Kim, Hu Young Jeong, Noejung Park, Jong‐Beom Baek
SJR Q1Nature CommunicationsOA

Heteroatom doping into the graphitic frameworks have been intensively studied for the development of metal-free electrocatalysts. However, the choice of heteroatoms is limited to non-metallic elements and heteroatom-doped graphitic materials do not satisfy commercial demands in terms of cost and stability. Here we realize doping semimetal antimony (Sb) at the edges of graphene nanoplatelets (GnPs) via a simple mechanochemical reaction between pristine graphite and solid Sb. The covalent bonding

Renewable Energy, Sustainability and the EnvironmentEnergy
9
Article|99 citations·2019
Exploitable Magnetic Anisotropy of the Two-Dimensional Magnet CrI3
Jeongwoo Kim, Kyoung‐Whan Kim, Bumseop Kim, Chang‐Jong Kang, Dongbin Shin, Sang‐Hoon Lee, Byoung‐Chul Min, Noejung Park
SJR Q1Nano Letters

Magnetic anisotropy often plays a central role in various static and dynamic properties of magnetic materials. In particular, for two-dimensional (2D) van der Waals materials, as inferred from the Mermin-Wagner theorem, it is an essential prerequisite for stabilizing ferromagnetic order. In this work, we carry out first-principles calculations for a CrI<sub>3</sub> monolayer and investigate how its magnetic anisotropy is interrelated to adjustable parameters governing the underlying electronic s

Materials ChemistryMaterials Science
10
Article|88 citations·2012
Progress on first-principles-based materials design for hydrogen storage
Noejung Park, Keunsu Choi, Jeongwoon Hwang, Dongwook Kim, Dong Ok Kim, Jisoon Ihm
SJR Q1Proceedings of the National Academy of SciencesOA

This article briefly summarizes the research activities in the field of hydrogen storage in sorbent materials and reports our recent works and future directions for the design of such materials. Distinct features of sorption-based hydrogen storage methods are described compared with metal hydrides and complex chemical hydrides. We classify the studies of hydrogen sorbent materials in terms of two key technical issues: (i) constructing stable framework structures with high porosity, and (ii) incr

Materials ChemistryMaterials Science
11
Article|87 citations·2013
Negatively curved carbon as the anode for lithium ion batteries
Dorj Odkhuu, Dong Hyun Jung, Hosik Lee, Sang Soo Han, Seung‐Hoon Choi, Rodney S. Ruoff, Noejung Park
SJR Q1Carbon
Materials ChemistryMaterials Science
12
Article|78 citations·2015
Hollow Silicon Nanostructures via the Kirkendall Effect
Yoonkook Son, Yeonguk Son, Min Choi, Minseong Ko, Sujong Chae, Noejung Park, Jaephil Cho
SJR Q1Nano Letters

The Kirkendall effect is a simple, novel phenomenon that may be applied for the synthesis of hollow nanostructures with designed pore structures and chemical composition. We demonstrate the use of the Kirkendall effect for silicon (Si) and germanium (Ge) nanowires (NWs) and nanoparticles (NPs) via introduction of nanoscale surface layers of SiO2 and GeO2, respectively. Depending on the reaction time, Si and Ge atoms gradually diffuse outward through the oxide layers, with pore formation in the n

Electrical and Electronic EngineeringEngineering
13
Article|70 citations·2024
Direct Electroplating Ruthenium Precursor on the Surface Oxidized Nickel Foam for Efficient and Stable Bifunctional Alkaline Water Electrolysis
Changqing Li, Bumseop Kim, Zhongping Li, Ranjit Thapa, Yifan Zhang, Jeong‐Min Seo, Runnan Guan, Feng Tang, Jae‐Hoon Baek, Jae‐Hoon Baek, Young Hyun Kim, Jong‐Pil Jeon
SJR Q1Advanced Materials

Abstract Water electrolysis to produce hydrogen (H 2 ) using renewable energy is one of the most promising candidates for realizing carbon neutrality, but its reaction kinetics is hindered by sluggish anodic oxygen evolution reaction (OER). Ruthenium (Ru) in its high‐valence state (oxide) provides one of the most active OER sites and is less costly, but thermodynamically unstable. The strong interaction between Ru nanoparticles (NPs) and nickel hydroxide (Ni(OH) 2 ) is leveraged to directly form

Renewable Energy, Sustainability and the EnvironmentEnergy
14
Article|65 citations·2017
Critical Role of Cations in Lithium Sites on Extended Electrochemical Reversibility of Co‐Rich Layered Oxide
Woongrae Cho, Seungjun Myeong, Namhyung Kim, Sanghan Lee, Youngki Kim, Maengsuk Kim, Seok Ju Kang, Noejung Park, Pilgun Oh, Jaephil Cho
SJR Q1Advanced Materials

Only a very limited amount of the high theoretical energy density of LiCoO 2 as a cathode material has been realized, due to its irreversible deterioration when more than 0.6 mol of lithium ions are extracted. In this study, new insights into the origin of such low electrochemical reversibility, namely the structural collapse caused by electrostatic repulsion between oxygen ions during the charge process are suggested. By incorporating the partial cation migration of LiNiO 2 , which produces a s

Electrical and Electronic EngineeringEngineering
15
Article|60 citations·2013
Postsynthetic Exchanges of the Pillaring Ligand in Three-Dimensional Metal–Organic Frameworks
Seok Jeong, Dongwook Kim, Xiaokai Song, Min Choi, Noejung Park, Myoung Soo Lah
SJR Q1Chemistry of Materials

Metal–organic frameworks, [Ni(HBTC)(dabco)] ( 2 ) and [Ni 2 (HBTC) 2 (bipy) 0.6 (dabco) 1.4 ] ( 3 ) (where H 3 BTC is 1,3,5-benzenetricarboxylic acid, dabco is 1,4-diazabicyclo[2.2.2]octane, and bipy is 4,4′-bipyridine), were prepared via postsynthetic ligand exchanges of [Ni(HBTC)(bipy)] ( 1 ). By controlling the concentration of dabco, we could obtain not only entropically favorable 2 with completely exchanged dabco but also enthalpically favorable 3 with selectively exchanged bipy/dabco in th

Inorganic ChemistryChemistry

Research Areas

Materials ChemistryElectrical and Electronic EngineeringAtomic and Molecular Physics, and OpticsRenewable Energy, Sustainability and the EnvironmentElectronic, Optical and Magnetic MaterialsInorganic Chemistry

Noejung Parkの研究をNubintでさらに深く

この研究室の論文をアプリで開き、AIと共に読み、要約し、引用しましょう。