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Jun Hee Lee

Ulsan National Institute of Science and Technology · Materials Science

About the Lab

Professor Jun Hee Lee's research lab specializes in computational and experimental materials science, focusing on functional oxides, superionic conductors, and multifunctional materials for energy and biomedical applications. The lab explores intrinsic ferroelectricity with subnanometer-scale dipoles, multiferroic oxides with strong spin-phonon coupling, and perovskite-based electrocatalysts for sustainable energy conversion. Additionally, the lab develops advanced solid-state electrolytes for room-temperature all-solid-state batteries and investigates biofabrication techniques for tissue engineering.

multifunctional oxidessolid-state batterieselectrocatalysisbioprintingferroelectrics

Research Overview

Papers
262
Total Citations
9,788
Papers (5y)
70
Primary Field
Materials Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
70total
2021
2022
2023
2024
2025
Citations per year (5y)
3,890total
20212022202320242025

Selected Papers

15
1
Article|466 citations·2020
Scale-free ferroelectricity induced by flat phonon bands in HfO 2
Hyun‐Jae Lee, Minseong Lee, Kyoungjun Lee, Jinhyeong Jo, Hyemi Yang, Yungyeom Kim, Seung Chul Chae, Umesh V. Waghmare, Jun Hee Lee
SJR Q1Science

cause extreme localization of electric dipoles within its irreducible half-unit cell widths (~3 angstroms). Contrary to conventional ferroelectrics with spread dipoles, those intrinsically localized dipoles are stable against extrinsic effects such as domain walls, surface exposure, and even miniaturization down to the angstrom scale. Moreover, the subnanometer-scale dipoles are individually switchable without creating any domain-wall energy cost. This offers unexpected opportunities for ultimat

Electrical and Electronic EngineeringEngineering
2
Article|333 citations·2010
Epitaxial-Strain-Induced Multiferroicity inSrMnO3from First Principles
Jun Hee Lee, Karin M. Rabe
SJR Q1Physical Review LettersOA

First-principles calculations reveal a large spin-phonon coupling in cubic SrMnO3, with ferromagnetic ordering producing a polar instability. Through combination of this coupling with the strain-polarization coupling characteristic of perovskites, the bulk antiferromagnetic-paraelectric ground state is driven to a previously unreported multiferroic ferroelectric-ferromagnetic state by increasing epitaxial strain. This state has a computed P(s)>54 μC/cm2 and magnetic T(c)>92 K. Large mixed magnet

Electronic, Optical and Magnetic MaterialsMaterials Science
3
Article|211 citations·2020
Enhancing Bifunctional Electrocatalytic Activities via Metal d-Band Center Lift Induced by Oxygen Vacancy on the Subsurface of Perovskites
Hansol Lee, Ohhun Gwon, Keunsu Choi, Linjuan Zhang, Jing Zhou, Jungmin Park, Jung‐Woo Yoo, Jian‐Qiang Wang, Jun Hee Lee, Guntae Kim
SJR Q1ACS Catalysis

For efficient electrochemical catalysts, several molecular-scale descriptors have been proposed for the oxygen reduction reaction (ORR) and oxygen evolution reaction (OER). Various descriptors of perovskite catalysts have been proposed successfully for understanding either ORR or OER, but previous studies are insufficient to explain and thus boost up both ORR and OER simultaneously due to obstacles such as many different chemical compositions, structures, and metal orbital bands. Therefore, we i

Renewable Energy, Sustainability and the EnvironmentEnergy
4
Article|176 citations·2018
Chromium removal from aqueous solution by a PEI-silica nanocomposite
Keunsu Choi, Soonjae Lee, Jin Ock Park, Jeong-Ann Park, So‐Hye Cho, Seung Yong Lee, Jun Hee Lee, Jae‐Woo Choi, Jun Hee Lee, Jae‐Woo Choi
SJR Q1Scientific ReportsOA

Abstract It is essential and important to determine the adsorption mechanism as well as removal efficiency when using an adsorption technique to remove toxic heavy metals from wastewater. In this research, the removal efficiency and mechanism of chromium removal by a silica-based nanoparticle were investigated. A PEI-silica nanoparticle was synthesized by a one-pot technique and exhibited uniformly well-dispersed PEI polymers in silica particles. The adsorption capacity of chromium ions was dete

Water Science and TechnologyEnvironmental Science
5
Article|167 citations·2018
Vacancy-Driven Na+ Superionic Conduction in New Ca-Doped Na3PS4 for All-Solid-State Na-Ion Batteries
Chang Ki Moon, Hyun Jae Lee, Kern Ho Park, Hiram Kwak, Jongwook W. Heo, Keunsu Choi, Hyemi Yang, Maeng-Suk Kim, Seung‐Tae Hong, Jun Hee Lee, Yoon Seok Jung
SJR Q1ACS Energy Letters

Mechanically sinterable sulfide Na+ superionic conductors are key to enabling room-temperature-operable all-solid-state Na-ion batteries (ASNBs) for large-scale energy storage applications. To date, few candidates can fulfill the requirement of a high ionic conductivity of ≥1 mS cm–1 using abundant, cost-effective, and nontoxic elements. Herein, the development of a new Na+ superionic conductor, Ca-doped cubic Na3PS4, showing a maximum conductivity of ∼1 mS cm–1 at 25 °C is described. Complement

Electrical and Electronic EngineeringEngineering
6
Review|126 citations·2020
Current Advances in 3D Bioprinting Technology and Its Applications for Tissue Engineering
Junjie Yu, Su A Park, Wan Doo Kim, Taeho Ha, Yuan-Zhu Xin, Jun Hee Lee, Donghyun Lee
SJR Q1PolymersOA

Three-dimensional (3D) bioprinting technology has emerged as a powerful biofabrication platform for tissue engineering because of its ability to engineer living cells and biomaterial-based 3D objects. Over the last few decades, droplet-based, extrusion-based, and laser-assisted bioprinters have been developed to fulfill certain requirements in terms of resolution, cell viability, cell density, etc. Simultaneously, various bio-inks based on natural-synthetic biomaterials have been developed and a

Biomedical EngineeringEngineering
7
Article|103 citations·2021
Air-Stable and Layer-Dependent Ferromagnetism in Atomically Thin van der Waals CrPS4
Joolee Son, Suhan Son, Pyeongjae Park, Maengsuk Kim, Zui Tao, Juhyun Oh, Taehyeon Lee, Sanghyun Lee, Junghyun Kim, Kaixuan Zhang, Kwanghee Cho, Takashi Kamiyama
SJR Q1ACS Nano

Ferromagnetism in two-dimensional materials presents a promising platform for the development of ultrathin spintronic devices with advanced functionalities. Recently discovered ferromagnetic van der Waals crystals such as CrI3, readily isolated two-dimensional crystals, are highly tunable through external fields or structural modifications. However, there remains a challenge because of material instability under air exposure. Here, we report the observation of an air-stable and layer-dependent f

Materials ChemistryMaterials Science
8
Article|96 citations·2013
Strong coupling of Jahn-Teller distortion to oxygen-octahedron rotation and functional properties in epitaxially strained orthorhombic LaMnO3
Jun Hee Lee, Kris T. Delaney, Éric Bousquet, Nicola A. Spaldin, Karin M. Rabe
SJR Q1Physical Review BOA

First-principles calculations reveal a large cooperative coupling of Jahn-Teller (JT) distortion to oxygen-octahedron rotations in perovskite LaMnO${}_{3}$. The combination of the two distortions is responsible for stabilizing the strongly orthorhombic $A$-AFM insulating ($I$) $ePbnm$ ground state relative to a metallic ferromagnetic (FM-$M$) phase. However, epitaxial strain due to coherent matching to a crystalline substrate can change the relative stability of the two states. In particular, co

Electronic, Optical and Magnetic MaterialsMaterials Science
9
Article|93 citations·2021
Sustainable highly charged C60-functionalized polyimide in a non-contact mode triboelectric nanogenerator
Jae Won Lee, Jae Won Lee, Sungwoo Jung, Jinhyeong Jo, Gi Hyeon Han, Dong-Min Lee, Jiyeon Oh, Hee Jae Hwang, Dukhyun Choi, Sang‐Woo Kim, Jun Hee Lee, Jun Hee Lee
SJR Q1Energy & Environmental Science

A sustainable highly charged C<sub>60</sub>-functionalized polyimide is introduced as the dielectric of a TENG, which generates higher output power and a superior charge density with slower charge decay rate, compared with a perfluoroalkoxy alkane film-based TENG.

Biomedical EngineeringEngineering
10
Article|90 citations·2011
Coupled Magnetic-Ferroelectric Metal-Insulator Transition in Epitaxially StrainedSrCoO3from First Principles
Jun Hee Lee, Karin M. Rabe
SJR Q1Physical Review LettersOA

First-principles calculations are presented for the epitaxial-strain dependence of the ground-state phase stability of perovskite SrCoO(3). Through the combination of the large spin-phonon coupling with polarization-strain coupling and the coupling of the band gap to the polar distortion, both tensile and compressive epitaxial strain are seen to drive the bulk ferromagnetic-metallic (FM-M) phase to antiferromagnetic-insulating-ferroelectric (AFM-I-FE) phases, the latter having unusually low elas

Electronic, Optical and Magnetic MaterialsMaterials Science
11
Article|81 citations·2020
Cu2O(100) surface as an active site for catalytic furfural hydrogenation
Jihyeon Lee, Jihyeon Lee, Ji Hui Seo, Chinh Nguyen‐Huy, Euiseob Yang, Jun Gyeong Lee, Jun Gyeong Lee, Hojeong Lee, Hojeong Lee, Eun Jeong Jang, Ja Hun Kwak, Jun Hee Lee
SJR Q1Applied Catalysis B: Environmental
Biomedical EngineeringEngineering
12
Article|79 citations·2019
Stable Subloop Behavior in Ferroelectric Si-Doped HfO2
Kyoungjun Lee, Hyun‐Jae Lee, Tae Yoon Lee, Hong Heon Lim, Myeong Seop Song, Hyang Keun Yoo, Dong Ik Suh, Jae Gil Lee, Jae Gil Lee, Zhongwei Zhu, Alexander Yoon, Matthew R. MacDonald
SJR Q1ACS Applied Materials & Interfaces

The recent demand for analogue devices for neuromorphic applications requires modulation of multiple nonvolatile states. Ferroelectricity with multiple polarization states enables neuromorphic applications with various architectures. However, deterministic control of ferroelectric polarization states with conventional ferroelectric materials has been met with accessibility issues. Here, we report unprecedented stable accessibility with robust stability of multiple polarization states in ferroele

Electrical and Electronic EngineeringEngineering
13
Article|75 citations·2014
TiO2/Ferroelectric Heterostructures as Dynamic Polarization-Promoted Catalysts for Photochemical and Electrochemical Oxidation of Water
Jun Hee Lee, Annabella Selloni
SJR Q1Physical Review Letters

Using first-principles density functional theory calculations, we explore the chemical activity of epitaxial heterostructures of TiO2 anatase on strained polar SrTiO3 films focusing on the oxygen evolution reaction (OER), the bottleneck of water splitting. Our results show that the reactivity of the TiO2 surface is tuned by electric dipoles dynamically induced by the adsorbed species during the intermediate steps of the reaction while the initial and final steps remain unaffected. Compared to th

Materials ChemistryMaterials Science
14
Article|71 citations·2018
Specific Metal–Support Interactions between Nanoparticle Layers for Catalysts with Enhanced Methanol Oxidation Activity
Sinmyung Yoon, Kyung Hwan Oh, Fudong Liu, Ji Hui Seo, Gábor A. Somorjai, Jun Hee Lee, Kwangjin An
SJR Q1ACS Catalysis

Oxide supports often play a critical role in metal-supported catalysts owing to their charge transfer phenomena that can alter catalytic performance. Herein, in place of conventional bulk oxide supports, monodisperse oxide nanoparticles (NPs) were exploited as supports for Pt catalysts. Depending on the type of oxide NP, Pt/oxide layered catalysts exhibited dramatic changes in the catalytic activity and selectivity for methanol oxidation. While Pt NPs deposited on MnO, Fe3O4, Co3O4, Cu2O, and Zn

Materials ChemistryMaterials Science
15
Article|60 citations·2019
In-situ coalesced vacancies on MoSe2 mimicking noble metal: Unprecedented Tafel reaction in hydrogen evolution
Junghyun Lee, Junghyun Lee, Changmin Kim, Keunsu Choi, Jihyung Seo, Yunseong Choi, Wooseon Choi, Young‐Min Kim, Hu Young Jeong, Jun Hee Lee, Jun Hee Lee, Guntae Kim
SJR Q1Nano EnergyOA
Renewable Energy, Sustainability and the EnvironmentEnergy

Research Areas

Materials ChemistryElectrical and Electronic EngineeringElectronic, Optical and Magnetic MaterialsRenewable Energy, Sustainability and the EnvironmentBiomedical EngineeringCondensed Matter Physics

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