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Zonghoon Lee

Ulsan National Institute of Science and Technology · 材料科学

研究室紹介

Professor Zonghoon Lee's research lab specializes in the design, synthesis, and characterization of advanced nanomaterials with a focus on 2D materials, nanostructured metals, and functional interfaces. The lab pioneers innovative fabrication techniques—such as room-temperature co-sputtering and substrate-free graphene growth—to create ultrathin, high-quality films and heterostructures with tailored mechanical, electronic, and catalytic properties. A key research direction involves atomic-resolution electron microscopy to probe nanoscale phenomena, including fracture mechanisms in bimodal alloys and dynamic processes like hole formation in hBN. The lab also explores energy-relevant applications, such as CO₂ electrocatalysis and nanomechanical systems, using advanced microscopy and materials engineering.

2D materialsnanomechanical systemselectron microscopynanoalloysCO₂ electrocatalysis

Research Overview

Papers
309
Total Citations
17,638
Papers (5y)
71
Primary Field
材料科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
71total
2022
2023
2024
2025
2026
Citations per year (5y)
871total
20222023202420252026

Selected Papers

15
1
Article|244 citations·2006
Metallic NEMS components fabricated from nanocomposite Al–Mo films
Zonghoon Lee, Colin Ophus, L. M. Fischer, Nathan Nelson-Fitzpatrick, K. L. Westra, Stéphane Evoy, Velimir Radmilović, U. Dahmen, David Mitlin
SJR Q2Nanotechnology

We have fabricated fully released nano-electro-mechanical system (NEMS) cantilevers of various geometries from metallic alloy nanocomposite films. At thicknesses of 4.3 and 20.0 nm, these are the thinnest released metal cantilevers reported in the literature to date. Such device dimensions are very difficult to achieve using conventional metal films. We were able to overcome this limitation by using room-temperature co-sputtering to synthesize nanocomposite alloy films of Al - Mo. A systematic i

Mechanics of MaterialsEngineering
2
Article|216 citations·2016
Microstructural study on degradation mechanism of layered LiNi0.6Co0.2Mn0.2O2 cathode materials by analytical transmission electron microscopy
Na Yeon Kim, Taeeun Yim, Junho Song, Ji‐Sang Yu, Zonghoon Lee
SJR Q1Journal of Power SourcesOA
Electrical and Electronic EngineeringEngineering
3
Article|155 citations·2022
Interface rich CuO/Al2CuO4 surface for selective ethylene production from electrochemical CO2 conversion
Siraj Sultan, Hojeong Lee, Sojung Park, Minho M. Kim, Aram Yoon, Hansaem Choi, Tae‐Hoon Kong, Young-Jin Koe, Hyung‐Suk Oh, Zonghoon Lee, Hyungjun Kim, Wooyul Kim
SJR Q1Energy & Environmental Science

In this work, we designed a novel CuO/Al 2 CuO 4 catalyst by a phase and interphase engineering approach, which enables the electrochemical conversion of carbon dioxide to ethylene with ultrahigh activity and selectivity.

Renewable Energy, Sustainability and the EnvironmentEnergy
4
Article|137 citations·2009
Direct Imaging of Soft−Hard Interfaces Enabled by Graphene
Zonghoon Lee, Ki‐Joon Jeon, Albert Dato, Rolf Erni, Thomas J. Richardson, Michael Frenklach, Velimir Radmilović
SJR Q1Nano Letters

Direct imaging of surface molecules and the interfaces between soft and hard materials on functionalized nanoparticles is a great challenge using modern microscopy techniques. We show that graphene, a single atomic layer of sp(2)-bonded carbon atoms, can be employed as an ultrathin support film that enables direct imaging of molecular layers and interfaces in both conventional and atomic-resolution transmission electron microscopy. An atomic-resolution imaging study of the capping layers and int

Structural BiologyBiochemistry, Genetics and Molecular Biology
5
Article|120 citations·2009
Tensile Deformation and Fracture Mechanism of Bulk Bimodal Ultrafine-Grained Al-Mg Alloy
Zonghoon Lee, Velimir Radmilović, Byungmin Ahn, Enrique J. Lavernia, Steven Nutt
SJR Q1Metallurgical and Materials Transactions AOA

The tensile fractures of ultrafine-grained (UFG) Al-Mg alloy with a bimodal grain size were investigated at the micro- and macroscale using transmission electron microscopy (TEM), scanning electron microscopy (SEM) equipped with focused ion beam (FIB), and optical microscopy. The nanoscale voids and crack behaviors near the tensile fracture surfaces were revealed in various scale ranges and provided the evidence to determine the underlying tensile deformation and fracture mechanisms associated w

Materials ChemistryMaterials Science
6
Article|110 citations·2004
Microstructure and microhardness of cryomilled bulk nanocrystalline Al?7.5%Mg alloy consolidated by high pressure torsion
Zonghoon Lee
SJR Q1Scripta Materialia
Materials ChemistryMaterials Science
7
Article|102 citations·2009
Clean and highly ordered graphene synthesized in the gas phase
Albert Dato, Zonghoon Lee, Ki‐Joon Jeon, Rolf Erni, Velimir Radmilović, Thomas J. Richardson, Michael Frenklach
SJR Q1Chemical Communications

We report that the substrate-free gas-phase graphene synthesis method produces clean and highly ordered graphene sheets that are similar in quality to the graphene obtained through the mechanical exfoliation of highly oriented pyrolytic graphite.

Materials ChemistryMaterials Science
8
Article|98 citations·2005
Bimodal microstructure and deformation of cryomilled bulk nanocrystalline Al–7.5Mg alloy
Zonghoon Lee, David B. Witkin, Velimir Radmilović, Enrique J. Lavernia, Steven Nutt
SJR Q1Materials Science and Engineering A
Materials ChemistryMaterials Science
9
Article|83 citations·2015
Atomic-scale dynamics of triangular hole growth in monolayer hexagonal boron nitride under electron irradiation
Gyeong Hee Ryu, Hyo Ju Park, Junga Ryou, Jin-Woo Park, Jongyeong Lee, Gwangwoo Kim, Hyeon Suk Shin, Christopher W. Bielawski, Rodney S. Ruoff, Suklyun Hong, Zonghoon Lee
SJR Q1NanoscaleOA

The production of holes by electron beam irradiation in hexagonal boron nitride (hBN), which has a lattice similar to that of graphene, is monitored over time using atomic resolution transmission electron microscopy. The holes appear to be initiated by the formation of a vacancy of boron and grow in a manner that retains an overall triangular shape. The hole growth process involves the formation of single chains of B and N atoms and is accompanied by the ejection of atoms and bundles of atoms al

Materials ChemistryMaterials Science
10
Article|66 citations·2023
Fabrication of p-type 2D single-crystalline transistor arrays with Fermi-level-tuned van der Waals semimetal electrodes
Seunguk Song, Aram Yoon, Sora Jang, Jason Lynch, Jihoon Yang, Juwon Han, Myeonggi Choe, Young Ho Jin, Cindy Yueli Chen, Yeryun Cheon, Jinsung Kwak, Changwook Jeong
SJR Q1Nature CommunicationsOA

Abstract High-performance p -type two-dimensional (2D) transistors are fundamental for 2D nanoelectronics. However, the lack of a reliable method for creating high-quality, large-scale p -type 2D semiconductors and a suitable metallization process represents important challenges that need to be addressed for future developments of the field. Here, we report the fabrication of scalable p -type 2D single-crystalline 2H-MoTe 2 transistor arrays with Fermi-level-tuned 1T’-phase semimetal contact ele

Materials ChemistryMaterials Science
11
Article|65 citations·2022
Atomic transistors based on seamless lateral metal-semiconductor junctions with a sub-1-nm transfer length
Seunguk Song, Aram Yoon, Jong‐Kwon Ha, Jihoon Yang, Sora Jang, Chloe Leblanc, Jaewon Wang, Yeoseon Sim, Deep Jariwala, Seung Kyu Min, Zonghoon Lee, Soon‐Yong Kwon
SJR Q1Nature CommunicationsOA

Abstract The edge-to-edge connected metal-semiconductor junction (MSJ) for two-dimensional (2D) transistors has the potential to reduce the contact length while improving the performance of the devices. However, typical 2D materials are thermally and chemically unstable, which impedes the reproducible achievement of high-quality edge contacts. Here we present a scalable synthetic strategy to fabricate low-resistance edge contacts to atomic transistors using a thermally stable 2D metal, PtTe 2 .

Materials ChemistryMaterials Science
12
Article|56 citations·2016
Wafer-scale monolayer MoS2grown by chemical vapor deposition using a reaction of MoO3and H2S
Youngchan Kim, Hunyoung Bark, Gyeong Hee Ryu, Zonghoon Lee, Changgu Lee
SJR Q2Journal of Physics Condensed Matter

Monolayer MoS2 nanosheets are potentially useful in optoelectronics, photoelectronics, and nanoelectronics due to their flexibility, mechanical strength, and direct band gap of 1.89 eV. Experimentalists have studied the synthesis of MoS2 using chemical vapor deposition (CVD) methods in an effort to fabricate wafer-scale nanofilms with a high uniformity and continuity for practical electronic applications. In this work, we applied the CVD method to a reaction of MoO3 powder and H2S gas to grow hi

Materials ChemistryMaterials Science
13
Article|54 citations·2020
One-dimensional hexagonal boron nitride conducting channel
Hyo Ju Park, Janghwan Cha, Min Choi, Jung Hwa Kim, Roland Yingjie Tay, Edwin Hang Tong Teo, Noejung Park, Suklyun Hong, Zonghoon Lee
SJR Q1Science AdvancesOA

Hexagonal boron nitride (hBN) is an insulating two-dimensional (2D) material with a large bandgap. Although known for its interfacing with other 2D materials and structural similarities to graphene, the potential use of hBN in 2D electronics is limited by its insulating nature. Here, we report atomically sharp twin boundaries at AA'/AB stacking boundaries in chemical vapor deposition-synthesized few-layer hBN. We find that the twin boundary is composed of a 6'6' configuration, showing conducting

Materials ChemistryMaterials Science
14
Article|42 citations·2003
Microstructural evolution and deformation of cryomilled nanocrystalline Al-Ti-Cu Alloy
Zonghoon Lee, Steven Nutt, Rodolfo Rodríguez, R.W. Hayes, Enrique J. Lavernia
SJR Q1Metallurgical and Materials Transactions A
Materials ChemistryMaterials Science
15
Article|42 citations·2020
van der Waals Epitaxial Formation of Atomic Layered α-MoO3 on MoS2 by Oxidation
Aram Yoon, Jung Hwa Kim, Jongchan Yoon, Yeongdong Lee, Zonghoon Lee
SJR Q1ACS Applied Materials & Interfaces

The electronic, catalytic, and optical properties of transition metal dichalcogenides (TMDs) are significantly affected by oxidation, and using oxidation to tune the properties of TMDs has been actively explored. In particular, because transition metal oxides (TMOs) are promising hole injection layers, a TMD-TMO heterostructure can be potentially applied as a p-type semiconductor. However, the oxidation of TMDs has not been clearly elucidated because of the structural instability and the extreme

Materials ChemistryMaterials Science

Research Areas

Materials ChemistryElectrical and Electronic EngineeringRenewable Energy, Sustainability and the EnvironmentMechanical EngineeringElectronic, Optical and Magnetic MaterialsAtomic and Molecular Physics, and Optics

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